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The security of many commonly used cryptographic protocols, especially public-key cryptosystems, would be compromised if general-purpose, large-scale, fault-tolerant quantum computers become a reality. In this paper we present our experience developing and lau…
openalex
Thomas J. Borrelli, M.V. Polak, Stanisław Radziszowski
2024-03-07
置信度 0.72
Quantum cryptographyComputer scienceCryptographyCryptosystemQuantum computer
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As quantum computing hardware advances, the demand for scalable, precise, and fully automated verification techniques for quantum circuits grows. This paper introduces a novel automata-based framework tailored for the verification of quantum circuits. In our a…
openalex
Yu‐Fang Chen, Kai-Min Chung, Ondřej Lengál, Jyun-Ao Lin 等
2025-05-29
置信度 0.72
Computer scienceAutomatonElectronic circuitTheoretical computer scienceQuantum
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High Resolution Image Download MS PowerPoint Slide Rapid interest in identifying specific biomarkers has been sparked by the development of wearable electrochemical sensors for physiological and biological monitoring via noninvasive measurement. During anaerob…
openalex
Ling‐Yu Chang, Mia Rinawati, Yiting Guo, Yu-Chi Lin 等
2024-06-06
置信度 0.72
GrapheneLayered double hydroxidesQuantum dotBiosensorNanotechnology
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The piecewise linearity condition on the total energy with respect to the total magnetization of finite quantum systems is derived using the infinite-separation-limit technique. This generalizes the well-known constancy condition, related to static correlation…
openalex
Andrew C. Burgess, Edward Linscott, David D. O’Regan
2024-07-12
置信度 0.72
QuantumPlane (geometry)Energy (signal processing)PhysicsCondensed matter physics
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We investigate the fractional quantum anomalous Hall (FQAH) effect in rhombohedral multilayer graphene (RnG) in the presence of a strong applied displacement field. We first introduce the interacting model of RnG, which includes the noninteracting continuum mo…
openalex
Ke Huang, S. Das Sarma, Xiao Li
2025-02-13
置信度 0.72
PhysicsQuantum Hall effectCoulombUniversality (dynamical systems)Quantum
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Two-dimensional (2D) transition metal dichalcogenides (TMDs) is a versatile class of quantum materials of interest to various fields including, e.g., nanoelectronics, optical devices, and topological and correlated quantum matter. Tailoring the electronic prop…
openalex
Yanyu Jia, Yu Guo, Tiancheng Song, Fang Yuan 等
2024-06-21
置信度 0.72
SuperconductivityChipMaterials scienceOptoelectronicsEngineering physics
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Abstract Copper indium sulfide quantum dots (CIS QDs) possess the desired optical properties to act as photoanodic material in photoelectrochemical cells, like a high molar absorption coefficient over the entire visible spectrum and long exciton lifetimes. The…
openalex
Giacomo Morselli, Caterina Bellatreccia, Michele Mazzanti, Vito Cristino 等
2024-05-03
置信度 0.72
Materials scienceQuantum dotIndium tin oxidePhotoelectrochemistrySurface modification
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The analysis of noisy quantum states prepared on current quantum computers is getting beyond the capabilities of classical computing. Quantum neural networks based on parametrized quantum circuits, measurements and feed-forward can process large amounts of qua…
openalex
Petr Zapletal, Nathan A. McMahon, Michael J. Hartmann
2024-07-26
置信度 0.72
Convolutional neural networkSymmetry (geometry)QuantumTopology (electrical circuits)Computer science
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We aim to derive a super-radiance solution of coherent light and sound waves involving water degrees of freedom in the environment of a microtubule. We introduce a Lagrangian density functional of quantum electrodynamics with non-relativistic charged bosons as…
openalex
Akihiro Nishiyama, Shigenori Tanaka, Jack A. Tuszyński
2024-06-18
置信度 0.72
RadianceQuantumDynamics (music)PhysicsAcoustics
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testing, the bioconjugate demonstrated a mitigating effect on the individual toxicity of both DOTMA and mQDs in SUM-159 (cancerous cells). Conversely, it exhibited a proliferative effect on RPE-1 (normal cells).
openalex
Sweny Jain, Nidhi Sahu, Dhiraj Bhatia, Pankaj Yadav
2024-01-01
置信度 0.72
Quantum dotNanotechnologyCarbon quantum dotsCarbon fibersChemistry
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Abstract We synthesize p‐type TiO 2 nanotubes that allow band‐gap adjustment by quantum confinement. These tubes therefore enable reductive photocatalytic reactions that are not thermodynamically possible on classic titania photocatalysts. Here, we demonstrate…
openalex
Hayoon Jung, Hyesung Kim, Johannes Will, Erdmann Spiecker 等
2025-03-13
置信度 0.72
PhotocatalysisSelectivityAmmoniaNanotubeCatalysis
-
Carbon dots (CDs) are an emerging class of nanomaterials with attractive optical properties, which promise to enable a variety of applications. An important and timely question is whether CDs can become a functional and sustainable alternative to incumbent opt…
openalex
Junkai Ren, Henry Opoku, Shi Tang, Ludvig Edman 等
2024-07-18
置信度 0.72
SustainabilityContext (archaeology)ConsumablesNanotechnologyRaw material
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Welcome to the 35th volume of Advanced Materials and the first issue of 2023. We're happy to be reflecting back on a successful year for the journal. With the strongest support of our authors and reviewers, Advanced Materials is continuing to make records of i…
openalex
James M. Cook, Esther Levy, Duoduo Liang, Babak Mostaghaci 等
2023-01-01
置信度 0.72
Materials scienceNanotechnologyHorizonEngineering physicsPolymer science
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Abstract Understanding the formation mechanisms of semiconductor nanocrystal quantum dots (QDs) is essential for fine‐tuning their optical and electrical properties. Despite their potential in solar energy conversion, the synthesis processes and resulting prop…
openalex
Hyo Cheol Lee, Hwapyong Kim, K. W. Kim, Kyunghoon Lee 等
2025-05-28
置信度 0.72
Ternary operationNucleationIndiumQuantum dotPhotocurrent
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High Resolution Image Download MS PowerPoint Slide III–V quantum dot (QD) photodetectors enable on-chip sensing in the telecommunications O-band with high responsivity and low dark current. We demonstrate for the first time III–V QD photodetectors monolithical…
openalex
Rosalyn Koscica, Alec M. Skipper, Bei Shi, Gerald Leake 等
2025-08-25
置信度 0.72
PhotodetectorPhotonicsQuantum dotOptoelectronicsMaterials science
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Strange metals arise in a variety of platforms for strongly correlated electrons, ranging from the cuprates, heavy fermions to flat band systems. Motivated by recent experiments in kagome metals, we study a Hubbard model on a kagome lattice whose noninteractin…
openalex
Lei Chen, Fang Xie, Shouvik Sur, Haoyu Hu 等
2023-07-18
置信度 0.72
PhysicsQuasiparticleCondensed matter physicsMott transitionQuantum mechanics
-
Quantum dot (QD) light-emitting diodes (QLEDs) are promising candidates for next-generation displays because of their high efficiency, brightness, broad color gamut, and solution-processability. Large-scale solution-processing of electroluminescent QLEDs poses…
openalex
Yiman Xu, Grant J. Dixon, Qing Xie, James F. Gilchrist 等
2025-01-29
置信度 0.72
Quantum dotScalingMaterials scienceOptoelectronicsLayer (electronics)
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The pursuit of sustainable development refers to meet the present needs while safeguarding the resources for future generations ensuring the well-being of human societies. Nanoscience is contributing significantly to the field of public healthcare by deliverin…
openalex
Kokkonda Jackson Sugunakara Chary, Anuradha Sharma, Amrita Singh
2023-01-01
置信度 0.72
NanotechnologyHealth careCarbon quantum dotsSafeguardingHuman health
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Quantum Rutherford scattering and the scattering of classical waves by black holes have similar formal structures and can be studied using the same mathematical techniques. In both contexts, the long-range nature of the interaction leads to a divergent total c…
openalex
Martin Pijnenburg, Giulia Cusin, Cyril Pitrou, Jean–Philippe Uzan
2024-07-23
置信度 0.72
PhysicsRutherford scatteringScatteringQuantumQuantum mechanics
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Abstract Topological defects, such as Stone-Wales defects and grain boundaries, are common in 2D materials. In this study, we investigate the intricate interplay of topological defects and carbon contamination in hexagonal boron nitride revealing an intriguing…
openalex
Rohit Babar, Ádám Ganyecz, Igor A. Abrikosov, Gergely Barcza 等
2025-04-29
置信度 0.72
Hexagonal boron nitrideMaterials sciencePhotonicsHexagonal crystal systemCarbon fibers
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Recent advancements in patient rehabilitation integrate both traditional and modern techniques to enhance treatment efficacy and accessibility. Hydrotherapy, leveraging water's physical properties, is crucial for reducing joint stress, alleviating pain, and im…
openalex
Fabio Salgado-Gomes-Sagaz, Vanessa Zorrilla-Muñoz, Nicolás García-Aracil
2024-12-04
置信度 0.72
ExoskeletonRehabilitationPhysical medicine and rehabilitationMedicineComputer science
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Abstract High‐energy excitons in transition metal dichalcogenides (TMDs), resulting from intrinsic van Hove singularities in the density of states, demonstrate strong ultraviolet light absorption capacity and significant potential for the development of high‐p…
openalex
Chuxin Yan, Yuanzheng Li, Rui Li, Rongjian Ma 等
2024-08-09
置信度 0.72
ExcitonResponsivityPhotodetectorOptoelectronicsQuantum efficiency
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We propose and demonstrate experimentally continuous phased dynamical decoupling (CPDD), where we apply a continuous field with discrete phase changes for quantum sensing and robust compensation of environmental and amplitude noise. CPDD does not use short pul…
openalex
Daniel Louzon, Genko T. Genov, Nicolas Staudenmaier, Florian Frank 等
2025-03-26
置信度 0.72
Dynamical decouplingPhysicsQuantum sensorQuantumDecoupling (probability)
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Nowadays, with the mechanization of human societies, the demand for energy production and storage has also increased.
openalex
Zahra Nezafat, Yahao Dong, Mahmoud Nasrollahzadeh, Nasrin Shafiei 等
2024-01-01
置信度 0.72
Agricultural wasteNano-Carbon fibersEnergy storageAgriculture
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Many types of biosensors employ magnetic nanoparticles (diameter = 5-300 nm) or magnetic particles (diameter = 300-5,000 nm) which have been surface functionalized to recognize specific molecular targets. Here we cover three types of biosensors that employ dif…
openalex
Isaac Koh, Lee Josephson
2009-10-16
置信度 0.72
Magnetic nanoparticlesBiosensorMaterials scienceNanotechnologyMagnetic relaxation
-
Effective corrosion control strategies are highly desired to reduce the fate of corrosion. One widely adopted approach is the use of corrosion inhibitors, which can significantly mitigate the detrimental effects of corrosion. This systematic review provides a …
openalex
Mahmoud A. Ahmed, Sherif Amin, Ashraf A. Mohamed
2024-01-01
置信度 0.72
CorrosionEnvironmentally friendlyCurrent (fluid)Biochemical engineeringMaterials science
-
Hydrogen-bonded organic frameworks (HOFs) are a class of crystalline framework materials assembled by hydrogen bonds. HOFs have the advantages of high crystallinity, mild reaction conditions, good solution processability, and reproducibility. Coupled with the …
openalex
Xu‐Yong Chen, Li‐Hui Cao, Xiang‐Tian Bai, Xiao‐Jie Cao
2024-01-05
置信度 0.72
Ionic bondingMaterials scienceHydrogen bondCovalent bondNetwork covalent bonding
-
NTs. An investigation of fluorescence along with smartphone-based studies by evaluating the gray measurement using Image J software showed a great response towards GSH and CAP providing LODs of 4.70 μM and 5.22 μM (fluorometrically) and 5.76 μM and 2.81 μM (sm…
openalex
Ankita B. Kujur, Manmohan L. Satnami, Yogyata Chawre, Pinki Miri 等
2024-01-01
置信度 0.72
Dual modeCarbon quantum dotsFluorescenceCarbon nanotubeQuantum dot
-
The state-of-art and key problems of carbon nanotube (CNT) based polymer composites (CNT/polymer composites) including CNT/polymer structural composites and CNT/polymer functional composites are reviewed. Based on the results reported up to now, CNTs can be an…
openalex
Jinhong Du, Jinbo Bai, Hui–Ming Cheng
2007-01-01
置信度 0.72
Materials scienceComposite materialCarbon nanotubePolymerComposite number
-
Abstract Flexible regulation of local chemistry and band gap of perovskite quantum dots (PeQDs) is crucial for exploring their new functionalities and device applications. In this work, a strategy based on the combination of femtosecond (fs) laser‐irradiation …
openalex
Han Xiao, Ronghua Chen, Zhehong Zhou, Bing Lin 等
2024-09-27
置信度 0.72
Quantum dotUltrashort pulsePerovskite (structure)Materials sciencePhase (matter)
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Although the quantum confinement effect has been achieved through physical size reduction, it has never been realized via exciton radius modulation without physical downsizing. Here, by introducing "breakpoints" of conjugation into the covalent organic framewo…
openalex
Longlong Liang, Jiawen Li, Jinliang Ning, Yihang Wang 等
2025-07-23
置信度 0.72
PhotoluminescenceQuantum dotCovalent bondNanotechnologyMaterials science
-
The growing field of correlated nanoelectronics exists at the intersection of two established fields: correlated oxide electronics and semiconductor nanoelectronics. The development of quantum technologies that exploit quantum coherence and entanglement for th…
openalex
Jeremy Levy
2022-11-01
置信度 0.72
NanoelectronicsReconfigurabilityNanotechnologyMaterials scienceNanowire
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In this paper, the quantum effects of fine scaling on the buckling behavior of carbon nanotubes (CNTs) under axial loading are investigated. Molecular mechanics and quantum mechanics are respectively utilized to study the buckling behavior and to obtain the mo…
openalex
M. Mirnezhad, R. Ansari, S.R. Falahatgar, P. Aghdasi
2024-03-28
置信度 0.72
BucklingCarbon nanotubeMaterials scienceAxial symmetryScaling
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RecommendationsT wo-dimensional (2D) materials have garnered enormous interest as a novel platform for exploring fundamental chemistry and physics at the single-atom thickness limit.These materials encompass various categories and types, including graphene, 1 …
openalex
Xiangfeng Duan
2024-08-26
置信度 0.72
LicenseLibrary scienceCitationComputer sciencePolitical science
-
High Resolution Image Download MS PowerPoint Slide Quantum dot (QD)-sensitized triplet energy transfer (TET) has found promising applications in photon upconversion and photocatalysis. However, the underlying mechanism of TET in the QD-acceptor complex remains…
openalex
Tao Jin, Zhendian Zhang, Sheng He, Alexey L. Kaledin 等
2025-04-30
置信度 0.72
ChemistryQuantum dotAcceptorMarcus theoryElectron transfer
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Quantum Wasserstein divergences are modified versions of quantum Wasserstein distances defined by channels and they have been conjectured to be genuine metrics on quantum state spaces by De Palma and Trevisan. We prove triangle inequality for quantum Wasserste…
openalex
Gergely Bunth, József Pitrik, Tamás Titkos, Dániel Virosztek
2024-08-07
置信度 0.72
Property (philosophy)Metric (unit)QuantumMathematicsWasserstein metric
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A central problem in the deployment of quantum technologies is the realization of robust architectures for quantum interconnects. We propose to engineer interconnects in semiconductors and insulators by patterning spin qubits at dislocations, thus forming quas…
openalex
Cunzhi Zhang, Victor Wen-zhe Yu, Yu Jin, Jonah Nagura 等
2026-01-09
置信度 0.72
Coherence (philosophical gambling strategy)QubitQuantumPhysicsQuantum technology
-
Two-dimensional materials are a class of atomically thin materials with assorted electronic and quantum properties. Accurate identification of layer thickness, especially for a single monolayer, is crucial for their characterization. This characterization proc…
openalex
Polina A. Leger, Aditya Ramesh, Talianna Ulloa, Yingying Wu
2024-11-13
置信度 0.72
Identification (biology)Computer scienceCharacterization (materials science)Data scienceArtificial intelligence
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Deep learning has proven promising in biological and chemical applications, aiding in accurate predictions of properties such as atomic forces, energies, and material band gaps. Traditional methods with rotational invariance, one of the most crucial physical l…
openalex
Hongwei Tu, Yanqiang Han, Zhilong Wang, An Chen 等
2023-09-19
置信度 0.72
Rotational invarianceInvariant (physics)Computer scienceFourier transformGeneralization
-
ring-opening polymerization (ROP). Herein, we first summarize disulfide-mediated ROP polymerization strategies, providing basic routes for designing and preparing PLA-based materials. PLA, as a biologically derived, low toxic, and easily modified material, pos…
openalex
Qing Yu, Zhiyue Fang, Shifang Luan, Lei Wang 等
2024-01-01
置信度 0.72
Lipoic acidMaterials sciencePolymerNanotechnologyPolymer science
-
Both nanoscience and nanotechnology have undoubtedly contributed significantly to the development of thermite-based nanoenergetic materials (NEMs) with tunable and tailorable combustion performance and their subsequent integration into devices. Specifically, t…
openalex
Rajagopalan Thiruvengadathan, Anqi Wang
2024-09-29
置信度 0.72
Nanoelectromechanical systemsNanotechnologyMaterials scienceThermiteFabrication
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Abstract The 2024 aluminum alloy is used extensively in the aircraft and aerospace industries because of its excellent mechanical properties. However, the weldability of 2024 aluminum alloy is generally low because it contains a high number of solutes, such as…
openalex
Masaki Kasuga, Tomokazu Sano, Akio Hirose
2019-11-12
置信度 0.72
Materials scienceWeldingWeldabilityMetallurgyLaser beam welding
-
Abstract In-sensor computing (ISC) integrates sensing, memory, and processing at the point of data acquisition, enabling real-time, low-power operation. Two-dimensional (2D) materials offer unique advantages for ISC due to their atomic thickness and multifunct…
openalex
Jinli Chen, Weigang Wang, Xiaodong Yan
2025-08-04
置信度 0.72
Computer science
-
Rising atmospheric CO2 levels demand efficient and sustainable carbon capture solutions. Direct air capture (DAC) via crystallizing hydrogen-bonded frameworks such as carbonate salts has emerged as a promising approach. This review explores the potential of cr…
openalex
Sylwia Pawlędzio, Xiaoping Wang
2024-01-13
置信度 0.72
Crystal engineeringHydrogen bondDensity functional theoryHydrogenChemistry
-
Gross–Neveu–Yukawa-type models such as the chiral Ising, chiral XY, and chiral Heisenberg models, serve as effective descriptions of two-dimensional Dirac semimetals undergoing quantum phase transitions into various symmetry-broken ordered states. Their relati…
openalex
Mireia Tolosa-Simeón, Laura Classen, Michael M. Scherer
2025-08-26
置信度 0.72
PhysicsDirac (video compression format)Quantum phase transitionQuantum phasesRenormalization group
-
The deconfinement quantum critical point (DQCP), a paradigm beyond the Landau-Ginzburg-Wilson framework to classify states of matters, has been attracting extensive attention over the past two decades. Experimentally, SrCu2(BO3)2 plays key roles in verifying t…
openalex
Jing Guo, Pengyu Wang, Cheng Huang, Bin-Bin Chen 等
2025-02-22
置信度 0.72
Critical point (mathematics)Quantum critical pointQuantumPhysicsTheoretical physics
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Remote passive drone detection in the presence of strong background noise is challenging, since they are point objects and cannot be recognized by their contour detection. In this study, we introduce a new passive single-photon dynamic imaging method using qua…
openalex
Shuxiao Wu, Jianyong Hu, J. Ge, Yanshan Fan 等
2025-07-14
置信度 0.72
Compressed sensingBroadbandComputer sciencePhotonPhoton counting
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Quantum mechanical (QM) treatments, when combined with molecular mechanical (MM) force fields, can effectively handle enzyme-catalyzed reactions without significantly increasing the computational cost. In this context, we present CHARMM-GUI QM/MM Interfacer, a…
openalex
Donghyuk Suh, Abdul Raafik Arattu Thodika, Seonghoon Kim, Kwangho Nam 等
2024-06-10
置信度 0.72
QM/MMMolecular dynamicsQuantumContext (archaeology)Computer science
-
In the SUPER scheme (Swing-UP of the quantum EmitteR population), excitation of a quantum emitter is achieved with two off-resonant, red-detuned laser pulses. This allows the generation of high-quality single photons without the need of complex laser stray lig…
openalex
Nils Heinisch, Nikolas Köcher, David Bauch, Stefan Schumacher
2024-01-19
置信度 0.72
PhotonPhysicsCommon emitterIdeal (ethics)Cavity quantum electrodynamics
-
Abstract Brain–computer interfaces (BCIs) can revolutionize how humans interact with technology, but several scientific and technological challenges must be addressed to realize their full potential. Recent developments in quantum‐based sensing methods offer p…
openalex
Kun Liao, Zhaochu Yang, Tao Dong, Libo Zhao 等
2023-10-31
置信度 0.72
Brain–computer interfaceComputer scienceQuantum computerIntersection (aeronautics)Quantum
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A bstract We provide non-trivial checks of the recently proposed duality between double-scaled SYK and a 2d dilaton gravity model with sine potential, studying the path integral at one-loop level. Specifically, we compute the logarithmic correction to the free…
openalex
Leonardo Bossi, Luca Griguolo, Jacopo Papalini, Lorenzo Russo 等
2025-06-13
置信度 0.72
PhysicsDilatonSineQuantum gravityMathematical physics
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Time reversal in a macroscopic system contradicts daily experience. It is practically impossible to restore a shattered cup to its original state by just time reversing the microscopic dynamics that led to its breakage. Yet, with the precise control capabiliti…
openalex
Sebastian Geier, A. Braemer, E. Braun, Maximilian Müllenbach 等
2024-08-21
置信度 0.72
QuantumDipoleSpin (aerodynamics)PhysicsCondensed matter physics
-
Context. The nature of the diffuse interstellar band (DIB) carriers is perhaps the most studied and longest-standing unresolved problem in astronomy. While four bands have been associated with the fullerene cation (C60+), the vast majority (>550) remain uniden…
openalex
A. P. Jones
2025-05-30
置信度 0.72
PhysicsAstrophysicsNanodotAstronomyInterstellar medium
-
Large-scale communication networks, such as the Internet, rely on routing packets of data through multiple intermediate nodes to transmit information from a sender to a receiver. In this paper, we develop a model of a quantum communication network that routes …
openalex
Hlér Kristjánsson, Yan Zhong, Anthony Munson, Giulio Chiribella
2024-12-20
置信度 0.72
Computer networkComputer scienceQuantum networkQuantum informationQuantum
-
Graphene quantum dots (GQDs) possess the photosensitive absorption for photoelectrochemical hydrogen evolution owing to special band structures, whereas they usually confront with photo-corrosion or undesired charge recombination during photoelectrochemical re…
openalex
Zhang Lin, Jiana Sun, Mengmeng Zhao, Yuxuan Wei 等
2024-02-29
置信度 0.72
PhotocurrentQuantum dotHeterojunctionMaterials scienceWater splitting
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Abstract Perovskite quantum dots (QDs) have shown attractive prospects in the field of visible photocatalysis, especially in the synthesis of high value‐added chemicals. However, under aerobic conditions, the stable operation of QD catalysts has been limited b…
openalex
Teng Wang, Yonglong Li, Xian Yang, Yanfang Hu 等
2024-06-04
置信度 0.72
Perovskite (structure)SuperoxidePhotoexcitationPhotochemistryChemistry
-
Arrays of gate-defined semiconductor quantum dots are among the leading candidates for building scalable quantum processors. High-fidelity initialization, control, and readout of spin qubit registers require exquisite and targeted control over key Hamiltonian …
openalex
A. Ananda Rao, Donovan Buterakos, Barnaby van Straaten, Valentin John 等
2025-04-30
置信度 0.72
Quantum dotModular designSemiconductorVirtualizationComputer science
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We determine the low-energy spectrum and Parisi replica-symmetry-breaking function for the spin-glass phase of the quantum Ising model with infinite-range random exchange interactions and transverse and longitudinal ( h ) fields. We show that, for all h , the …
openalex
Maria Tikhanovskaya, Subir Sachdev, Rhine Samajdar
2024-04-17
置信度 0.72
Spin glassSymmetry breakingMatrix product statePhysicsSpin (aerodynamics)
-
Quantum systems in nonequilibrium conditions, where coherent many-body interactions compete with dissipative effects, can feature rich phase diagrams and emergent critical behavior. Associated collective effects, together with the continuous observation of qua…
openalex
R. Mattes, Albert Cabot, Federico Carollo, Igor Lesanovsky
2025-10-27
置信度 0.72
Dissipative systemPhysicsQuantumQuantum metrologyMetrology
-
The physics of a single Josephson junction coupled to a resistive environment is a long-standing fundamental problem at the center of an intense debate, strongly revived by the advent of superconducting platforms with high-impedance multimode resonators. Here …
openalex
Luca Giacomelli, Cristiano Ciuti
2024-06-27
置信度 0.72
Josephson effectResonatorMulti-mode optical fiberPhase transitionPhysics
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Within a decade, the field of magnetic skyrmionics has developed from a niche prediction to a huge and active research field. Not only do magnetic skyrmions—magnetic whirls with a unique topology—reveal fundamentally new physics, but they have also risen to pr…
openalex
Karin Everschor‐Sitte, Jan Masell, Robert M. Reeve, Mathias Kläui
2018-12-26
置信度 0.72
SkyrmionPerspective (graphical)Magnetic fieldField (mathematics)Physics
-
Silica-on-silicon is a major optical integration platform, while the emergent class of the integrated laser-written circuits’ platform offers additionally high customizability and flexibility for rapid prototyping. However, the inherent waveguides’ low core/cl…
openalex
S. I. Tsintzos, Konstantinos Tsimvrakidis, James C. Gates, Ali W. Elshaari 等
2024-04-09
置信度 0.72
PhotonicsOptoelectronicsQuantum dotWaveguidePhotonic integrated circuit
-
The rational exploration and design of high-performance, stable electrocatalysts are crucial for efficient renewable energy storage, conversion, and utilization. Artificial intelligence (AI) is revolutionizing this field by significantly reducing the time and …
openalex
Yifan Zeng, Jun Wang, Fengwang Li, Tongliang Liu 等
2025-10-18
置信度 0.72
ElectrocatalystComputer scienceEnablingKey (lock)Field (mathematics)
-
openalex
Hooman Abbasi, Marcelo Antunes, José Ignácio Velasco
2019-02-09
置信度 0.72
Materials scienceNanocompositeElectromagnetic shieldingElectromagnetic interferenceEMI
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Ever since self-assembled monolayers (SAMs) were adopted as hole-transporting layers (HTL) for perovskite solar cells (PSCs), numerous SAMs for HTL have been synthesized and reported. SAMs offer several unique advantages including relatively simple synthesis, …
openalex
Doyeong Yeo, Juyeon Shin, Dabit Kim, Jae Yun Jaung 等
2024-01-12
置信度 0.72
MonolayerAnchoringMaterials scienceNanotechnologySelf-assembled monolayer
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Abstract A circular shift operator (or cyclic rotation gate) $${{\,\mathrm{\texttt {ROT}}\,}}_k$$ ROT k applies a rightward (or leftward) shift to an input register of n qubits o by as many positions as encoded by an additional input $$k \in \mathbb N$$ k ∈ N …
openalex
Arianna Pavone, Caterina Viola
2024-08-27
置信度 0.72
Rotation (mathematics)PhysicsQuantumQuantum mechanicsMathematics
-
Broad adoption has already been started of MXene materials in various energy storage technologies, such as super-capacitors and batteries, due to the increasing versatility of the preparation methods, as well as the ongoing discovery of new members. The essent…
openalex
Mohammad Nezam Uddin Chy, Md. Arafat Rahman, Jin‐Hyuk Kim, Nirjhor Barua 等
2024-03-31
置信度 0.72
AnodeLithium (medication)Materials scienceNanoarchitectures for lithium-ion batteriesIon
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Tetracycline (Tc) antibiotics, a class of synthetically produced broad-spectrum antimicrobial drugs, have been widely used in animal husbandry, leading to their widespread presence in animal-derived foods. However, misuse, overuse, and non-compliance with with…
openalex
Xin Cheng, Jingming Zhou, Yumei Chen, Zhuting Chen 等
2024-12-01
置信度 0.72
FluorescenceQuantum dotTetracyclineChemistryNanotechnology
-
The traditional quantum speed limits are not attainable for many physical processes, as they tend to be loose and fail to determine the exact time taken by quantum systems to evolve. To address this, we derive exact quantum speed limits for the unitary dynamic…
openalex
Arun Kumar Pati, Brij Mohan, Sahil, Samuel L. Braunstein
2023-05-05
置信度 0.72
Quantum algorithmQuantum operationQuantumPhysicsQuantum process
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Abstract The stability of perovskite quantum dot solar cells is one of the key challenges of this technology. This study reveals the unique degradation behavior of cesium lead triiodide (CsPbI3) quantum dot solar cells. For the first time, it is shown that the…
openalex
Julius Brunner, Angelika Wrzesińska‐Lashkova, Lucas Scalon, Ruth Pinheiro Muniz 等
2025-01-09
置信度 0.72
Quantum dotPhotovoltaicsPerovskite (structure)Degradation (telecommunications)Triiodide
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Nanoparticles are structures that possess unique properties with high surface area-to-volume ratio. Their small size, up to 100 nm, and potential for surface modifications have enabled their use in a wide range of applications. Various factors influence the pr…
openalex
Furkan Eker, Hatice Duman, Emir Akdaşçi, Ecem Bolat 等
2024-07-25
置信度 0.72
NanoparticleNanotechnologySpecific surface areaMaterials scienceComputer science
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Abstract Materials datasets usually contain many redundant (highly similar) materials due to the tinkering approach historically used in material design. This redundancy skews the performance evaluation of machine learning (ML) models when using random splitti…
openalex
Qin Li, Nihang Fu, Sadman Sadeed Omee, Jianjun Hu
2024-10-18
置信度 0.72
Redundancy (engineering)Property (philosophy)Computer scienceMachine learningArtificial intelligence
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Abstract Developing afterglow materials with wide‐range and time‐dependent colors is highly desirable but challenging. Herein, by calcinating the mixture of Rhodamine B and NH 4 Al(OH) 2 CO 3 , carbon dots (CDs) are generated and in situ embedded in the porous…
openalex
Longyue Zhang, Xipao Chen, Mingyu Xin, Hailiang Yang 等
2024-10-18
置信度 0.72
PhosphorescenceAfterglowPhotochemistryMaterials scienceRhodamine B
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Abstract Near‐infrared (NIR) phosphors that exhibit high quantum efficiency and excellent thermostability are of critical importance for the development of NIR light‐emitting diodes (LEDs) with substantial output power. In this work, Cr 3+ ‐Ni 2+ codoping Y 3 …
openalex
Zhichao Ren, Hongquan Yu, Yichao Wang, Sai Xu 等
2025-04-19
置信度 0.72
Excited stateMaterials scienceInfraredQuenching (fluorescence)Atomic physics
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The potential of Si and SiGe-based devices for the scaling of quantum circuits is tainted by device variability. Each device needs to be tuned to operation conditions and each device realisation requires a different tuning protocol. We demonstrate that it is p…
openalex
Brandon Severin, D. T. Lennon, Leon C. Camenzind, Florian Vigneau 等
2024-07-27
置信度 0.72
Quantum dotOptoelectronicsComputer scienceScalingHeterojunction
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The dynamics of nonequilibrium closed quantum systems and their route to thermalization are of fundamental interest to several fields, from cosmology to particle physics. However, a comprehensive description of nonequilibrium phenomena still presents a signifi…
openalex
Michelle A. Moreno-Armijos, A. R. Fritsch, Arnol D. García-Orozco, Sarah Sab 等
2025-01-14
置信度 0.72
PhysicsQuantum turbulenceNon-equilibrium thermodynamicsThermalisationSuperfluidity
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Quantum information processing introduces novel approaches for classical data encoding to encompass the complex patterns of input data of practical computational challenges using basic principles of quantum mechanics. The classification of diabetes is an examp…
openalex
Wajiha Rahim Khan, Muhammad Ahmad Kamran, Misha Urooj Khan, Malik Muhammad Ibrahim 等
2025-01-01
置信度 0.72
Classifier (UML)QuantumArtificial intelligenceComputer scienceDiabetes mellitus
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In this study, we explore the interplay between \mathcal{PT} 𝒫 𝒯 -symmetry and quantum chaos in a non-Hermitian dynamical system. We consider an extension of the standard diagnostics of quantum chaos, namely the complex level spacing ratio and out-of-time-or…
openalex
Kshitij Sharma, Himanshu Sahu, Subroto Mukerjee
2025-11-07
置信度 0.72
Quantum chaosQuantumPhysicsLyapunov exponentChaotic
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Previous studies have shown that the three-dimensional (3D) geometric and electronic structure of molecules play a crucial role in determining their key properties and intermolecular interactions. Therefore, it is necessary to establish a quantum chemical (QC)…
openalex
Zhijiang Yang, Tengxin Huang, Li Pan, Jingjing Wang 等
2024-04-29
置信度 0.72
Quantum chemicalComputer scienceProperty (philosophy)Representation (politics)Database
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Abstract In recent years, quantum technology has undergone transformative advancements, opening up unprecedented possibilities in computation, metrology, sensing, and communication and reshaping the landscape of scientific research. Based on superposition, int…
openalex
O. Rader, S. Pascarelli, Klaus Attenkofer, Anna A. Makarova 等
2025-10-22
置信度 0.72
Quantum technologyQuantum imagingQuantum nanoscienceQuantum sensorQuantum
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Abstract Quantum computing is an exciting field with high disruptive potential, but very difficult to access. For this reason, many approaches to teaching quantum computing are being developed worldwide. This always raises questions about the didactic concept,…
openalex
Gerhard Hellstern, Jörg Hettel, Bettina Just
2024-09-13
置信度 0.72
QuantumComputationQuantum computerQuantum informationComputer science
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Developing diversified construction strategies for high-color-purity and efficient multiple resonance thermally activated delayed fluorescence (MR-TADF) materials is a major strategic demand to meet the requirements of ultra-high-definition organic light-emitt…
openalex
Tingting Huang, Yincai Xu, Yupei Qu, Xueying Lu 等
2025-04-03
置信度 0.72
OLEDMaterials scienceDelocalized electronElectroluminescenceQuantum efficiency
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Epitaxial TiO2 rutile films were fabricated on α-Al2O3 (1012) substrate in the layer-by-layer fashion by laser molecular beam epitaxy. Ablation with a Co-doped TiO2 target produced single phase of rutile film with the concentration of Co between 0 and 5%. Some…
openalex
Yuji Matsumoto, Ryota Takahashi, Makoto Murakami, Takashi Koida 等
2001-11-01
置信度 0.72
Materials scienceRutileFerromagnetismMolecular beam epitaxyEpitaxy
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openalex
Jing Wang, M. Jamesh, Qiang Gao, Bo Han 等
2024-04-12
置信度 0.72
Tafel equationOverpotentialHydroxideOxygen evolutionCatalysis
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Nonlinear optical responses in two-dimensional (2D) materials can build free-space optical neuromorphic computing systems. Ensuring the high performance and the tunability of the system is essential to encode diverse functions. However, common strategies, incl…
openalex
Lei Tong, Yali Bi, Yilun Wang, Kai Peng 等
2024-11-27
置信度 0.72
Neuromorphic engineeringOptical computingModulation (music)PhotonicsComputer science
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Abstract In multi-agent systems, Bayesian networks are pivotal for inference and decision-making under uncertainty, yet they face significant challenges, such as high computational complexity and slow decision speed. Quantum computing, leveraging superposition…
openalex
Hao Shi, Ming Zhang, Haoqiang Chen, J K Han 等
2025-09-06
置信度 0.72
InferenceQuantumComputer scienceArtificial intelligencePhysics
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Projective measurement is a commonly used assumption in quantum mechanics. However, advances in quantum measurement techniques allow for partial measurements, which accurately estimate state information while keeping the wavefunction intact. In this dissertati…
openalex
Jonathan Monroe
2021-08-17
置信度 0.72
ObservableJosephson effectCoherence (philosophical gambling strategy)MetrologyPhysics
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A crucial aspect of quantum information is the establishment of multiuser quantum networks, ensuring secure transmission of information among separated users. However, establishing a large-scale network remains a substantial challenge, requiring massive and co…
openalex
Shengshuai Liu, Lin Li, Yujie Wang, Mengting Ning 等
2025-10-10
置信度 0.72
Quantum entanglementQuantum networkPhysicsQuantumComputer science
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Exceptional points (EPs), which arose early from non-Hermitian physics, significantly amplify the system's response to minor perturbations, and they act as a useful concept to enhance measurement in metrology. In particular, such a metrological enhancement gro…
openalex
Minwei Shi, Guzhi Bao, Jinxian Guo, Weiping Zhang
2025-05-09
置信度 0.72
MetrologyQuantum metrologyQuantumOrder (exchange)Physics
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nanospheres, cubes, and rods spanning the zero-dimensional (0D) to three-dimensional (3D) transition to investigate the influence of dimensionality and shape on exciton spin decoherence. Using circularly polarized transient absorption spectroscopy, we find tha…
openalex
Evan H. Oriel, Kseniia Shcherbak, Ihor Cherniukh, Dmitry N. Dirin 等
2025-04-28
置信度 0.72
NanocrystalCurse of dimensionalityExcitonQuantum dotCondensed matter physics
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Abstract Electrically driven self‐emissive quantum dot light‐emitting diodes (QLEDs) offer the advantages of high contrast, high color saturation and simple solution processability, making them the ultimate target for commercialization of QD‐based displays. Ch…
openalex
Qiang Su, Heng Zhang, Shuming Chen
2024-10-29
置信度 0.72
PhotonQuantum dotExcitonElectronPhysics
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The sulfonamide Schiff base compound (E)-4-((4-(dimethylamino)benzylidene)amino)-N-(5-methylisoxazol-3-yl)benzenesulfonamide was successfully prepared and fully characterized. The foremost objective of this study was to explore the molecular geometry of the af…
openalex
Md. Minhazul Abedin, Tarun Kumar Pal, Md. Najem Uddin, M. A. Alim 等
2024-07-01
置信度 0.72
Schiff baseIn silicoQuantum chemicalSulfonamideDerivative (finance)
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Quasielastic neutron scattering (QENS) is an experimental technique that can measure parameters of mobility, such as diffusion jump rate and jump length, as well as localized relaxations of chemical species (molecules, ions, and segments) at atomic and nanomet…
openalex
Naresh C. Osti, Niina Jalarvo, Eugene Mamontov
2024-01-01
置信度 0.72
Characterization (materials science)SpectrometerMaterials scienceSiliconNanotechnology
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openalex
M. M. Sharma, Santosh Karki Chhetri, Gokul Acharya, David Graf 等
2025-02-27
置信度 0.72
Materials scienceSemimetalNODALOscillation (cell signaling)Line (geometry)
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Symmetry is a cornerstone of condensed matter physics, fundamentally shaping the behavior of electronic systems and inducing the emergence of novel phenomena. The Hall effect, a key concept in this field, demonstrates how symmetry breaking, particularly of tim…
openalex
Shuo Wang, Wei Niu, Yue‐Wen Fang
2025-04-28
置信度 0.72
Nonlinear systemCondensed matter physicsHall effectPhysicsMaterials science
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A facile synthesis and application of photon upconversion (UC) probes, CuInS₂/ZnS quantum dots (nCIS QDs) is presented, which exhibits near-infrared (NIR) spectral emission. The nCIS QDs are synthesized via a template-assisted cation-exchange reaction during a…
openalex
Ho Kyung Lee, Tae‐Wook Kim, Yoon‐A Jang, Yunseo Jeong 等
2025-04-16
置信度 0.72
Materials sciencePhoton upconversionQuantum dotInfraredPolymer
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Homomorphic encryption is a recent and fundamental breakthrough in modern cryptography, which allows the performance of operations on encrypted data without unveiling the data. Leveraging quantum mechanics principles, quantum computers can potentially solve ce…
openalex
Shreya Girish Savadatti, Aswani Kumar Cherukuri, Annapurna Jonnalagadda, Athanasios V. Vasilakos
2025-04-23
置信度 0.72
Homomorphic encryptionComputational intelligenceComputer scienceQuantumEncryption
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MXene quantum dots (MQDs) integrate quantum confinement and rich surface chemistry, enabling fast charge transfer and abundant active sites. This review outlines structure–activity relationships and applications in catalysis and energy conversion.
openalex
Ruchi Agarwalla, Rohan Bezboruah, L.R. Saikia
2026-01-01
置信度 0.72
Quantum dotNanotechnologyHeteroatomMaterials scienceQuantum
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This paper presents an adaptation of the standard quantum search technique to enable application within Dynamic Programming, in order to optimise a Markov Decision Process. This is applicable to problems arising from typical planning domains that are intractab…
openalex
Sanjeev Naguleswaran, L.B. White, Ian Fuss
2006-06-06
置信度 0.72
Maxima and minimaComputer scienceComputationMathematical optimizationQuantum computer
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This paper reviewed the entire life cycle of plastics and options for the management of plastic waste to address barriers to industrial chemical recycling and further provide perceptions on possible opportunities with such materials.
openalex
Houqian Li, Horacio A. Aguirre‐Villegas, Robert D. Allen, Xianglan Bai 等
2022-01-01
置信度 0.72
Waste managementChemical industryPlastic wasteBusinessEnvironmental science