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Nowadays, quantum computing has reached the engineering phase, with fully-functional quantum processors integrating hundred of noisy qubits available. Yet -- to fully unveil the potential of quantum computing out of the labs and into business reality -- the ch…
openalex
Marcello Caleffi, Michele Amoretti, Davide Ferrari, Daniele Cuomo 等
2022-12-20
置信度 0.72
Quantum computerComputer scienceQubitKey (lock)Distributed computing
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Molecular spins are promising building blocks of future quantum technologies thanks to the unparalleled flexibility provided by chemistry, which allows the design of complex structures targeted for specific applications. However, their weak interaction with ex…
openalex
Alessandro Chiesa, Alberto Privitera, Emilio Macaluso, Matteo Mannini 等
2023-05-12
置信度 0.72
Materials scienceChirality (physics)SelectivitySpin (aerodynamics)Nanotechnology
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Abstract The quantum internet is a cutting‐edge paradigm that uses the unique characteristics of quantum technology to radically alter communication networks. This new network type is expected to collaborate with 6G networks, creating a synergy that will funda…
openalex
Georgi Gary Rozenman, Neel Kanth Kundu, Ruiqi Liu, Leyi Zhang 等
2023-10-22
置信度 0.72
The InternetVariety (cybernetics)Quantum networkComputer scienceQuantum information science
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In this account, a technical overview of the artificial force induced reaction (AFIR) method is presented. The AFIR method is one of the automated reaction-path search methods developed by the authors, and has been applied extensively to a variety of chemical …
openalex
Satoshi Maeda, Yu Harabuchi, Makito Takagi, Tetsuya Taketsugu 等
2016-06-03
置信度 0.72
HydroformylationIsomerizationChemistryAldol reactionDissociation (chemistry)
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ABSTRACT Quantum computing exploits the principles of quantum mechanics to address computational problems that are intractable to classical systems. This study examines the evolution, architecture, and applications of the field, with a focus on foundational pr…
openalex
Christopher Columbus Chinnappan, Palani Thanaraj Krishnan, Elakiya Elamaran, Rajakumar Arul 等
2025-08-01
置信度 0.72
ArchitectureComputer scienceComputer architectureHistoryArchaeology
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We give a pedagogical introduction to the generalized hydrodynamic approach to inhomogeneous quenches in integrable many-body quantum systems. We review recent applications of the theory, focusing in particular on two classes of problems: bipartitioning protoc…
openalex
Vincenzo Alba, Bruno Bertini, Maurizio Fagotti, Lorenzo Piroli 等
2021-01-01
置信度 0.72
Quantum entanglementIntegrable systemHamiltonian (control theory)Statistical physicsPhysics
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The emergence of large-scale quantum computing presents an imminent threat to contemporary public-key cryptosystems, with quantum algorithms such as Shor’s algorithm capable of efficiently breaking RSA and elliptic curve cryptography (ECC). This vulnerability …
openalex
Maryam Abbasi, Filipe Cardoso, Paulo Váz, José Silva 等
2025-05-21
置信度 0.72
Benchmark (surveying)Computer scienceQuantum cryptographyCryptographyTheoretical computer science
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Recently, substantial amount of activity in quantum general relativity (QGR) has focused on the semiclassical analysis of the theory. In this paper, we want to comment on two such developments: (1) polymer-like states for Maxwell theory and linearized gravity …
openalex
T Thiemann
2006-03-06
置信度 0.72
PhysicsSemiclassical physicsGeneral relativityCoherent statesHilbert space
-
The Quantum Scientific Computing Open User Testbed (QSCOUT) at Sandia National Laboratories is a trapped-ion qubit system designed to evaluate the potential of near-term quantum hardware in scientific computing applications for the U.S. Department of Energy an…
openalex
Susan Clark, Daniel Lobser, Melissa Revelle, Christopher G. Yale 等
2021-01-01
置信度 0.72
TestbedComputer scienceQuantum computerQuantumWorld Wide Web
-
openalex
Ulf Ryde
1996-04-01
置信度 0.72
ZincChemistryCoordination sphereLigand (biochemistry)Alcohol dehydrogenase
-
openalex
Keshav Singh Rawat, Mamta Yadav
2025-07-17
置信度 0.72
Key (lock)Visual analyticsAnalyticsComputer scienceData science
-
Quantum computation represents a threat to many cryptographic protocols in operation today. It has been estimated that by 2035, there will exist a quantum computer capable of breaking the vital cryptographic scheme RSA2048. Blockchain technologies rely on cryp…
openalex
Joseph J. Kearney, Carlos A. Perez-Delgado
2021-04-23
置信度 0.72
CryptocurrencyVulnerability (computing)Computer securityCryptographyComputer science
-
Structured light has become topical of late, where controlling light in all its degrees of freedom has offered novel states of light long predicted, enhanced functionality in applications, and a modern toolbox for probing fundamental science. Structuring light…
openalex
Isaac Nape, Bereneice Sephton, Pedro Ornelas, Chané Moodley 等
2023-05-01
置信度 0.72
Structured lightPhotonPhysicsQuantum information scienceQuantum
-
Abstract In the technologically changing world, the demand for ultra‐reliable, faster, low power, and secure communication has significantly risen in recent years. Researchers have shown immense interest in emerging quantum computing (QC) due to its potentials…
openalex
Muhammad Zulfiqar Ali, Abdoalbaset Abohmra, Muhammad Usman, Adnan Zahid 等
2023-05-31
置信度 0.72
Computer scienceQuantum information scienceQuantum computerPerspective (graphical)Key (lock)
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Quantum machine learning could possibly become a valuable alternative to classical machine learning for applications in high energy physics by offering computational speedups. In this study, we employ a support vector machine with a quantum kernel estimator (Q…
openalex
Sau Lan Wu, Shaojun Sun, Wen Guan, Chen Zhou 等
2021-09-08
置信度 0.72
Large Hadron ColliderQuantum machine learningQuantum computerQuantum algorithmPhysics
-
Due to the explosive rise of quantum computing, there has been intense competition in business and academics in the field of quantum optics in recent decades. The current invention's overall scalability in quantum computing has surpassed many orders of magnitu…
openalex
Jeff Shuford
2024-02-02
置信度 0.72
Quantum computerComputer scienceScalabilityQuantum information scienceQuantum
-
Variational quantum computing offers a flexible computational paradigm with applications in diverse areas. However, a key obstacle to realizing their potential is the Barren Plateau (BP) phenomenon. When a model exhibits a BP, its parameter optimization landsc…
openalex
Martín Larocca, Supanut Thanasilp, Samson Wang, Kunal Sharma 等
2024-05-01
置信度 0.72
QuantumStatistical physicsQuantum computerTheoretical physicsPhysics
-
Quantum dots (QDs) are the smallest nanomaterials (2-10 nm), with unique optical and electronic properties. Thanks to these properties, QDs have been standing during the last years as signal tags for different applications, including bioimaging, fluorescent bi…
openalex
Daniel Quesada-González, Arben Merkoçi
2025-01-25
置信度 0.72
BiosensorQuantum dotNanotechnologyComputer scienceEnvironmental science
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openalex
Maxwell T. West, S. Tsang, Jia Shun Low, Charles D. Hill 等
2023-05-25
置信度 0.72
Adversarial systemComputer scienceRobustness (evolution)Artificial intelligenceMachine learning
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Deep learning has achieved significant success in pattern recognition, with convolutional neural networks (CNNs) serving as a foundational architecture for extracting spatial features from images. Quantum computing provides an alternative computational framewo…
openalex
Changzhou Long, Mengyuan Huang, Xiucai Ye, Yasunori Futamura 等
2025-08-28
置信度 0.72
Computer scienceMNIST databaseConvolutional neural networkQuantumQuantum computer
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openalex
Andrea Pasin, Maurizio Ferrari Dacrema, Washington Cunha, Marcos André Gonçalves 等
2025-09-02
置信度 0.72
ClefComputer scienceRecommender systemInformation retrievalTask (project management)
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The first week of August 2022 saw the world’s cryptographers grapple with the second shocker of the year. Another one of the four post-quantum cryptography (PQC) algorithms selected by the NIST (National Institute of Standards and Technology) in a rigorous 5-y…
openalex
Fazal Raheman
2022-11-16
置信度 0.72
Computer scienceNISTComputer securityCryptographyEncryption
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openalex
Mamta Yadav, Keshav Singh Rawat
2025-10-03
置信度 0.72
Computer scienceData scienceTransformative learningCentralitySustainability science
-
An important result in classical stochastic thermodynamics is the work fluctuation-dissipation relation (FDR), which states that the dissipated work done along a slow process is proportional to the resulting work fluctuations. We show that slowly driven quantu…
openalex
Harry J. D. Miller, Matteo Scandi, Janet Anders, Martí Perarnau-Llobet
2019-12-04
置信度 0.72
QuantumCoherence (philosophical gambling strategy)PhysicsStatistical physicsWork (physics)
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Neuromorphic computing has received considerable attention as promising alternatives to classical von Neumann computing architectures. An attractive concept in this field is reservoir computing which is based on coupled non-linear elements to enable for instan…
openalex
Tobias Heuser, Jan Grose, Steffen Holzinger, Maximilian M. Sommer 等
2019-07-12
置信度 0.72
Quantum dotReservoir computingOptoelectronicsComputer scienceQuantum computer
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Numerous reports claim that quantum advantage, which should emerge as a direct consequence of the advent of quantum computers, will herald a new era of chemical research because it will enable scientists to perform the kinds of quantum chemical simulations tha…
openalex
Vincent E. Elfving, Benno W. Broer, Mark Webber, Jacob Gavartin 等
2020-09-25
置信度 0.72
Quantum computerComputer scienceQuantumScope (computer science)Quantum chemistry
-
The National Institute of Standards and Technology is selecting public-key cryptographic algorithms through a public, competition-like process. The new public-key cryptography standards will specify additional digital signatures, public-key encryption, and key…
openalex
Gorjan Alagic, Maxime Bros, Pierre Ciadoux, David Cooper 等
2024-10-10
置信度 0.72
NISTStandardizationCryptographyQuantum cryptographyProcess (computing)
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An ancient and counterintuitive phenomenon known as the Mpemba effect (water can cool faster when initially heated up) showcases the critical role of initial conditions in relaxation processes. How to realize and utilize this effect for speeding up relaxation …
openalex
Jie Zhang, Gang Xia, Chun-Wang Wu, Ting Chen 等
2025-01-06
置信度 0.72
QuantumRelaxation (psychology)PhysicsEigenvalues and eigenvectorsCoalescence (physics)
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openalex
Pradeep Niroula, Christopher D. White, Qingfeng Wang, Sonika Johri 等
2024-09-23
置信度 0.72
PhysicsMAGIC (telescope)Quantum phase transitionPhase transitionQuantum
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openalex
Vladimir M. Fomin
2018-09-01
置信度 0.72
Quantum point contactPhysicsQuantum dotCondensed matter physicsQuantum
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These notes are a didactic overview of the non perturbative and background independent approach to a quantum theory of gravity known as loop quantum gravity. The definition of real connection variables for general relativity, used as a starting point in the pr…
openalex
Alejandro Pérez
2004-09-15
置信度 0.72
Loop quantum gravitySpin foamQuantum gravityTheoretical physicsImmirzi parameter
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Abstract The emergence of quantum technologies has led to groundbreaking advancements in computing, sensing, secure communications, and simulation of advanced materials with practical applications in every industry sector. The rapid advancement of the quantum …
openalex
Abhishek Purohit, Maninder Kaur, Zeki Can Seskir, Matthew T. Posner 等
2023-09-11
置信度 0.72
Maturity (psychological)QuantumComputer scienceQuantum technologyQuantum sensor
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preprints
2026
置信度 0.74
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preprints
2026
置信度 0.74
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preprints
2026
置信度 0.74
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europepmc
2026
置信度 0.80
-
preprints
2026
置信度 0.74
-
Quantum Entanglement-Driven Constraint Propagation (QECP) presents a fundamentally new approach to constraint propagation in quantum systems. Traditional methods often rely on classical representations, limiting the exploration of complex, multi-dimensional co…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum Entanglement-Driven Constraint Propagation (QECP) presents a fundamentally new approach to constraint propagation in quantum systems. Traditional methods often rely on classical representations, limiting the exploration of complex, multi-dimensional co…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Complete Archival Metadata Package Title: Cyber-Biological Synchronization: Algorithmic Metabolism, Radix 00–32 Rest-Frame Regularization, and Autonomous Manifold Homeostasis Authors: Kasiulevicius, Egidijus; Kasiulevicius, Azuolas; Kasiuleviciute, Saule; Kasi…
datacite
Kasiulevicius, Egidijus, Kasiulevicius, Azuolas, Kasiuleviciute, Saule, Kasiuleviciene, Ausra
2026
置信度 0.66
-
Complete Archival Metadata Package Title: Cyber-Biological Synchronization: Algorithmic Metabolism, Radix 00–32 Rest-Frame Regularization, and Autonomous Manifold Homeostasis Authors: Kasiulevicius, Egidijus; Kasiulevicius, Azuolas; Kasiuleviciute, Saule; Kasi…
datacite
Kasiulevicius, Egidijus, Kasiulevicius, Azuolas, Kasiuleviciute, Saule, Kasiuleviciene, Ausra
2026
置信度 0.66
-
Quantum annealing offers a promising approach to solving optimization problems, but its susceptibility to errors poses a significant challenge. Conventional error correction methods often require significant overhead and are not adaptable to the dynamic nature…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum annealing offers a promising approach to solving optimization problems, but its susceptibility to errors poses a significant challenge. Conventional error correction methods often require significant overhead and are not adaptable to the dynamic nature…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
A classical repetition-code simulator that introduces the systems logic of fault tolerance through hardware errors, measurement errors, and majority-vote software decoding.
datacite
Kiefer, Boris
2026
置信度 0.66
fault tolerancequantum error correctionrepetition codemajority votequantum computing education
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This paper investigates the application of quantum computing to enhance the generation of random numbers and improve data compression through a novel approach to entropy compression. We propose a quantum random number generator (QRNG) leveraging quantum entang…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper investigates the application of quantum computing to enhance the generation of random numbers and improve data compression through a novel approach to entropy compression. We propose a quantum random number generator (QRNG) leveraging quantum entang…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper explores the application of quantum computing to the verification of geometric transformations, specifically focusing on a novel approach based on adaptive topology. We demonstrate the feasibility of utilizing quantum algorithms to efficiently valid…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper explores the application of quantum computing to the verification of geometric transformations, specifically focusing on a novel approach based on adaptive topology. We demonstrate the feasibility of utilizing quantum algorithms to efficiently valid…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum computing holds immense promise for solving complex problems intractable for classical computers. However, quantum systems are notoriously susceptible to errors, making accurate computations challenging. Quantum error mitigation (QEM) techniques aim to…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum computing holds immense promise for solving complex problems intractable for classical computers. However, quantum systems are notoriously susceptible to errors, making accurate computations challenging. Quantum error mitigation (QEM) techniques aim to…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum entanglement, a fundamental phenomenon in quantum mechanics, holds immense potential for revolutionizing computation. However, harnessing this potential requires overcoming significant challenges, particularly in achieving efficient and reliable quantu…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum entanglement, a fundamental phenomenon in quantum mechanics, holds immense potential for revolutionizing computation. However, harnessing this potential requires overcoming significant challenges, particularly in achieving efficient and reliable quantu…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum information theory holds immense promise for revolutionizing computation, and the development of Non-Linear Logic Systems (NLSS) offers a compelling avenue for exploring novel computational paradigms. This paper delves into the integration of quantum i…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum information theory holds immense promise for revolutionizing computation, and the development of Non-Linear Logic Systems (NLSS) offers a compelling avenue for exploring novel computational paradigms. This paper delves into the integration of quantum i…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper investigates the potential of quantum computation to accelerate constraint programming verification, particularly for large and complex problems. We propose a novel method leveraging a quantum algorithm to efficiently explore the solution space, aim…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper investigates the potential of quantum computation to accelerate constraint programming verification, particularly for large and complex problems. We propose a novel method leveraging a quantum algorithm to efficiently explore the solution space, aim…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper explores the synergistic integration of dynamic adaptive topology and quantum computing, aiming to enhance quantum computation through optimized parameter adjustments. Traditional quantum computing relies on static parameters, limiting computational…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper explores the synergistic integration of dynamic adaptive topology and quantum computing, aiming to enhance quantum computation through optimized parameter adjustments. Traditional quantum computing relies on static parameters, limiting computational…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper presents a novel parallel computing model leveraging the principle of quantum state superposition. The core idea is to decompose computational tasks into multiple quantum states, enabling parallel execution through a designed quantum circuit. The pr…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper presents a novel parallel computing model leveraging the principle of quantum state superposition. The core idea is to decompose computational tasks into multiple quantum states, enabling parallel execution through a designed quantum circuit. The pr…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper investigates the application of dynamic matrix decomposition (DMD) techniques within the framework of quantum computing to optimize a complex problem. The core focus is on utilizing quantum algorithms to accelerate the matrix decomposition process, …
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper investigates the application of dynamic matrix decomposition (DMD) techniques within the framework of quantum computing to optimize a complex problem. The core focus is on utilizing quantum algorithms to accelerate the matrix decomposition process, …
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper introduces a novel approach to quantum computing based on adaptive quantum state and entanglement manipulation. Traditional quantum algorithms often struggle to accurately simulate complex quantum systems, while adaptive quantum control offers the p…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper introduces a novel approach to quantum computing based on adaptive quantum state and entanglement manipulation. Traditional quantum algorithms often struggle to accurately simulate complex quantum systems, while adaptive quantum control offers the p…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper investigates a novel algorithm for accelerating matrix decomposition within the context of asymmetric quantum states. Traditional matrix decomposition methods often struggle with complex, rapidly evolving quantum states, leading to computational bot…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper investigates a novel algorithm for accelerating matrix decomposition within the context of asymmetric quantum states. Traditional matrix decomposition methods often struggle with complex, rapidly evolving quantum states, leading to computational bot…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum state topology plays a critical role in understanding the fundamental properties of quantum systems and has become a central focus within the development of quantum computation. This paper investigates the potential of utilizing topological mapping tec…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum state topology plays a critical role in understanding the fundamental properties of quantum systems and has become a central focus within the development of quantum computation. This paper investigates the potential of utilizing topological mapping tec…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper presents a novel high-order quantum entanglement computing framework designed to enhance computational efficiency and precision. The framework leverages advanced quantum entanglement to enable adaptive quantum algorithms, dynamically adjusting param…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper presents a novel high-order quantum entanglement computing framework designed to enhance computational efficiency and precision. The framework leverages advanced quantum entanglement to enable adaptive quantum algorithms, dynamically adjusting param…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper introduces a novel algorithm validation framework based on quantum entanglement, designed to rigorously test complex algorithms in parallel and distributed computing environments. Traditional algorithm verification often relies on classical computat…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper introduces a novel algorithm validation framework based on quantum entanglement, designed to rigorously test complex algorithms in parallel and distributed computing environments. Traditional algorithm verification often relies on classical computat…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper introduces a novel quantum state adaptive computation paradigm aimed at enhancing the efficiency of complex calculations. Traditional computing approaches often require manual parameter adjustments, limiting adaptability to intricate environments. W…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper introduces a novel quantum state adaptive computation paradigm aimed at enhancing the efficiency of complex calculations. Traditional computing approaches often require manual parameter adjustments, limiting adaptability to intricate environments. W…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum State Matrix Decomposition Optimization is a novel optimization algorithm designed to enhance the efficiency of matrix decomposition, particularly within the context of quantum computing and related applications. This paper introduces a dynamic matrix …
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum State Matrix Decomposition Optimization is a novel optimization algorithm designed to enhance the efficiency of matrix decomposition, particularly within the context of quantum computing and related applications. This paper introduces a dynamic matrix …
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum entanglement is a cornerstone of quantum information processing, offering immense potential for secure communication and quantum computing. However, accurately predicting the state of entangled systems remains a significant challenge due to the inheren…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum entanglement is a cornerstone of quantum information processing, offering immense potential for secure communication and quantum computing. However, accurately predicting the state of entangled systems remains a significant challenge due to the inheren…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper investigates the application of dynamic topology in quantum computing, proposing a novel model that dynamically adjusts the topology of a quantum system to enhance computational stability. Traditional quantum computing models often struggle with com…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper investigates the application of dynamic topology in quantum computing, proposing a novel model that dynamically adjusts the topology of a quantum system to enhance computational stability. Traditional quantum computing models often struggle with com…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper introduces an adaptive matrix reconstruction algorithm leveraging quantum computing for accelerated matrix computation. Traditional matrix operations are computationally intensive, especially for large matrices. This novel approach utilizes quantum …
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper introduces an adaptive matrix reconstruction algorithm leveraging quantum computing for accelerated matrix computation. Traditional matrix operations are computationally intensive, especially for large matrices. This novel approach utilizes quantum …
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper introduces a novel quantum spin-based optimization algorithm designed to enhance the performance of quantum computing algorithms. Traditional optimization methods rely on fixed parameters, often limiting their effectiveness in complex problems. Our …
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper introduces a novel quantum spin-based optimization algorithm designed to enhance the performance of quantum computing algorithms. Traditional optimization methods rely on fixed parameters, often limiting their effectiveness in complex problems. Our …
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum computing, leveraging the unique properties of quantum systems, offers the potential for unprecedented computational power. However, the development of efficient quantum algorithms is often hindered by the inherent complexity of quantum systems and the…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum computing, leveraging the unique properties of quantum systems, offers the potential for unprecedented computational power. However, the development of efficient quantum algorithms is often hindered by the inherent complexity of quantum systems and the…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Abstract: We propose a novel method for efficiently simulating spin networks within a non-Euclidean space, leveraging the principles of topological quantum computing. This approach focuses on representing the spin network using a topological representation, si…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Abstract: We propose a novel method for efficiently simulating spin networks within a non-Euclidean space, leveraging the principles of topological quantum computing. This approach focuses on representing the spin network using a topological representation, si…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper presents a novel quantum computing-based optimization algorithm designed to address the limitations of traditional optimization methods when applied to complex systems. The algorithm leverages quantum phenomena, specifically quantum superposition an…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper presents a novel quantum computing-based optimization algorithm designed to address the limitations of traditional optimization methods when applied to complex systems. The algorithm leverages quantum phenomena, specifically quantum superposition an…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper proposes a novel approach to universal computation leveraging the precise control of quantum coherence degradation, often considered a detrimental effect in quantum computing. Instead of mitigating decoherence, we argue for its utilization as a fund…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper proposes a novel approach to universal computation leveraging the precise control of quantum coherence degradation, often considered a detrimental effect in quantum computing. Instead of mitigating decoherence, we argue for its utilization as a fund…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper explores the potential of leveraging quantum entanglement to revolutionize quantum computing through a novel dimensionality mapping technique. We introduce a dynamic quantum entanglement network designed to create a "dimension mapping" mechanism, ef…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper explores the potential of leveraging quantum entanglement to revolutionize quantum computing through a novel dimensionality mapping technique. We introduce a dynamic quantum entanglement network designed to create a "dimension mapping" mechanism, ef…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum computing is poised to revolutionize numerous fields, offering unparalleled computational power. However, scaling up quantum computers faces significant challenges, particularly concerning algorithm efficiency. This paper explores the application of a …
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum computing is poised to revolutionize numerous fields, offering unparalleled computational power. However, scaling up quantum computers faces significant challenges, particularly concerning algorithm efficiency. This paper explores the application of a …
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper explores the application of a probabilistic logic framework to design quantum computing assistance algorithms. We propose a novel algorithm that leverages the unique properties of quantum computation, specifically quantum superposition and entanglem…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
This paper explores the application of a probabilistic logic framework to design quantum computing assistance algorithms. We propose a novel algorithm that leverages the unique properties of quantum computation, specifically quantum superposition and entanglem…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum error correction (QEC) is a critical component of future quantum computing systems, enabling reliable computation by mitigating the effects of noise and errors. Traditional QEC methods often rely on predefined error correction protocols, which struggle…
datacite
Zhang, Jincheng
2026
置信度 0.66
-
Quantum error correction (QEC) is a critical component of future quantum computing systems, enabling reliable computation by mitigating the effects of noise and errors. Traditional QEC methods often rely on predefined error correction protocols, which struggle…
datacite
Zhang, Jincheng
2026
置信度 0.66