-
crossref
Zhen-Hua Wang, Xiao-Yu Kuang, Ming-Min Zhong, Zai-Xiu Yang 等
2014-06-26T16:14:43Z
置信度 0.70
-
Optimisation topologique d’inductances intégrées en technologie FD-SOI pour des applications RF et de contrôle de qubits : utilisation de matériaux magnétiques et supraconducteurs à températures cryogéniques La place des inductances passives dans les systèmes …
crossref
Franck Sabatier
2026-04-09T00:16:02Z
置信度 0.70
-
crossref
Bhaskar Roy Bardhan, Manish K. Gupta, Jonathan P. Dowling
2013-04-12T20:37:05Z
置信度 0.70
-
We propose a scalable way to construct a 3D cluster state for fault-tolerant topological one-way computation (TOWC) even if the entangling two-qubit gates succeed with a small probability. It is shown that fault-tolerant TOWC can be performed with the success …
crossref
Keisuke Fujii, Yuuki Tokunaga
2010-12-14T16:12:37Z
置信度 0.70
QubitQuantum computerTopology (electrical circuits)Controlled NOT gateComputer science
-
crossref
Markus Johansson, Antonio Z. Khoury, Kuldip Singh, Erik Sjöqvist
2013-04-22T10:23:19Z
置信度 0.70
-
Abstract We propose to utilize two parity-protected qubits which are built based on superconductor/topological-insulator/superconductor (SC/TI/SC) Josephson junction to implement a parity-spin superconducting qubit. The SC/TI/SC Josephson junctions have identi…
crossref
Guo-Liang Guo, Han-Bing Leng, Xin Liu
2024-05-14T22:28:31Z
置信度 0.70
-
Decoy states have recently been proposed as a useful method for substantially improving the performance of quantum key distribution (QKD). Here, we present a general theory of the decoy state protocol based on only two decoy states and one signal state. We per…
openalex
Xiongfeng Ma, Bing Qi, Yi Zhao, Hoi‐Kwong Lo
2005-07-20
置信度 0.72
DecoyQuantum key distributionProtocol (science)Computer scienceKey (lock)
-
A secure communication network with quantum key distribution in a metropolitan area is reported. Six different QKD systems are integrated into a mesh-type network. GHz-clocked QKD links enable us to demonstrate the world-first secure TV conferencing over a dis…
openalex
M. Sasaki, Mikio Fujiwara, Hirokazu Ishizuka, Werner Klaus 等
2011-05-11
置信度 0.72
Quantum key distributionComputer scienceComputer networkKey (lock)Relay
-
openalex
Marco Lucamarini, Zhiliang Yuan, J. F. Dynes, A. J. Shields
2018-04-27
置信度 0.72
Quantum key distributionRepeater (horology)Computer scienceQuantum channelQuantum limit
-
Abstract Quantum key distribution (QKD) promises unconditional security in data communication and is currently being deployed in commercial applications. Nonetheless, before QKD can be widely adopted, it faces a number of important challenges such as secret ke…
openalex
Eleni Diamanti, Hoi-Kwong Lo, Bing Qi, Zhiliang Yuan
2016-11-07
置信度 0.72
Quantum key distributionKey (lock)Computer scienceKey distributionQuantum cryptography
-
When elementary quantum systems, such as polarized photons, are used to transmit digital information, the uncertainty principle gives rise to novel cryptographic phenomena unachievable with traditional transmission media, e.g. a communications channel on which…
openalex
C. H. Bennett, Brassard, Gilles
2020-03-14
置信度 0.72
Coin flippingPublic-key cryptographyCryptographyComputer securityKey (lock)
-
A theorem by Shannon and the Holevo theorem impose that the efficiency of any protocol for quantum key distribution, E, defined as the number of secret (i.e., allowing eavesdropping detection) bits per transmitted bit plus qubit, is E < or = 1. The problem add…
openalex
Adán Cabello
2000-12-25
置信度 0.72
Quantum key distributionQubitEavesdroppingQuantum cryptographyComputer science
-
openalex
Paul Jouguet, Sébastien Kunz-Jacques, Anthony Leverrier, Philippe Grangier 等
2013-04-14
置信度 0.72
Quantum key distributionComputer scienceQuantum information scienceKey distributionKey (lock)
-
Quantum key distribution (QKD) offers the promise of absolutely secure communications. However, proofs of absolute security often assume perfect implementation from theory to experiment. Thus, existing systems may be prone to insidious side-channel attacks tha…
openalex
Samuel L. Braunstein, Stefano Pirandola
2012-03-30
置信度 0.72
Quantum key distributionComputer scienceQuantum cryptographyQuantum channelQuantum entanglement
-
We prove the security of the Bennett-Brassard (BB84) quantum key distribution protocol in the case where the source and detector are under the limited control of an adversary. Our proof applies when both the source and the detector have small basis-dependent f…
openalex
Daniel Gottesman, Hoi-Kwong Lo, N. L\"utkenhaus, John Preskill
2004-09-01
置信度 0.72
BB84Quantum key distributionEavesdroppingImperfectDetector
-
The first step in any quantum key distribution (QKD) protocol consists of sequences of measurements that produce correlated classical data. We show that these correlation data must violate some Bell inequality in order to contain distillable secrecy, if not th…
openalex
Antonio Acín, Nicolas Gisin, Lluís Masanes
2006-09-20
置信度 0.72
Quantum key distributionBell's theoremLocal hidden variable theoryBell test experimentsKochen–Specker theorem
-
I prove the security of quantum key distribution against individual attacks for realistic signals sources, including weak coherent pulses and down-conversion sources. The proof applies to the Bennett-Brassard 1984 protocol with the standard detection scheme (n…
openalex
Norbert Lütkenhaus
2000-04-06
置信度 0.72
Quantum key distributionKey (lock)Computer scienceProtocol (science)Quantum cryptography
-
We present a quantum key distribution system with a 2.5 GHz repetition rate using a three-state time-bin protocol combined with a one-decoy approach. Taking advantage of superconducting single-photon detectors optimized for quantum key distribution and ultralo…
openalex
Alberto Boaron, Gianluca Boso, Davide Rusca, Cédric Vulliez 等
2018-11-05
置信度 0.72
Quantum key distributionKey (lock)Optical fiberQuantum cryptographyQuantum
-
crossref
Luis A. Lizama-Pérez, J. Mauricio López, Eduardo de Carlos Lopez
2018-05-30T12:35:56Z
置信度 0.70
-
crossref
2010-08-02T17:32:58Z
置信度 0.70
-
crossref
2010-08-02T17:32:58Z
置信度 0.70
-
crossref
Ramona Wolf
2021-08-04T12:03:07Z
置信度 0.70
-
Certification «boîte noire» : ressources quantique et distribution quantique de clé L'information quantique est un nouveau paradigme qui utilise des systèmes quantiques pour le transfert, l'échange et le traitement de l'information. En tirant avantage des prop…
crossref
Xavier Valcarce
2026-04-07T16:25:02Z
置信度 0.70
-
In this work, we present a reliable, efficient, and tight numerical method for calculating key rates for finite-dimensional quantum key distribution (QKD) protocols. We illustrate our approach by finding higher key rates than those previously reported in the l…
crossref
Adam Winick, Norbert Lütkenhaus, Patrick J. Coles
2018-07-26T20:35:32Z
置信度 0.70
-
crossref
E. Y. Bushuev
2023-07-17T13:35:19Z
置信度 0.70
-
crossref
Hyunjo Kim
2023-02-21T00:47:00Z
置信度 0.70
-
Distribution quantique de clef et codes correcteurs quantiques avec des sytèmes bosoniques Cette thèse porte sur l'étude théorique de la distribution quantique de clef et de la correction d'erreurs quantiques, mises en œuvre avec des systèmes bosoniques. Dans …
crossref
Aurélie Denys
2026-04-08T15:26:57Z
置信度 0.70
-
crossref
2007-04-02T21:51:13Z
置信度 0.70
-
crossref
2023-10-10T00:07:09Z
置信度 0.70
-
Laser frequency stabilization underpins precision metrology, optical atomic clocks, quantum optics, and laser spectroscopy. In recent years, field-programmable gate arrays (FPGAs) have become attractive for this task because signal generation, phase-sensitive …
pubmed
Yan Z, Fan W, Zhang L, Gao W 等
2026 Jul 14
置信度 0.82
-
k -entanglement, including entanglement relative to full separability and genuinely multipartite entanglement, is a fundamental quantum resource in multipartite quantum systems. Its identification and quantification play essential roles in quantum information …
pubmed
Guo J, Hou J, Qi X, He K
2026 Jul 22
置信度 0.82
-
Quantum neural architecture search (QNAS) has emerged as a promising approach for automatically designing parameterized quantum circuits (PQCs) for near-term quantum machine learning tasks. However, quantum evolutionary algorithm (QEA)-based QNAS methods often…
pubmed
Shang L, Cao H, Wu Y, Niu X 等
2026 Jul 22
置信度 0.82
-
Mercury ion (Hg 2+ ) contamination poses severe threats to ecological systems and human health, necessitating the development of facile and rapid monitoring methodologies. Herein, a fluorescence sensing system integrating ion-imprinted polymer (IIP) nanopartic…
pubmed
Wang R, Xue J, Tan C, Jia B 等
2026 Jul 28
置信度 0.82
-
Acute respiratory distress syndrome (ARDS) is a life-threatening inflammatory condition characterized by high morbidity and mortality, with limited effective pharmacological therapies currently available. The search for novel compounds with anti-inflammatory a…
pubmed
Veloso VL, Dos Santos Alves W, de Sousa DP, de Castro E Sousa JM 等
2026 Jul 27
置信度 0.82
-
Density functional theory struggles to accurately determine the electron density of atoms, whose error is inevitably encoded into the pseudopotential and propagated into solid-state calculations. However, little is known about how this affects accuracy nor how…
pubmed
Ye K, Liu H, Li Y, Zhang S
2026 Jul 28
置信度 0.82
-
Electrons in layered van der Waals materials possess a layer pseudospin characterizing their wave function distribution among layers. In twisted structures, this pseudospin forms nontrivial textures, leading to intriguing phenomena such as the layer Hall effec…
pubmed
Xiao C, Xiao C, Zhai D, Yao W
2026 Jul 26
置信度 0.82
-
Quantum networks and quantum repeaters represent the promising avenues for building large-scale quantum information systems, serving as foundational infrastructure for distributed quantum computing, long-distance quantum communication, and networked quantum se…
pubmed
Cui ZB, Wang ZQ, Liu PY, Wang Y 等
2026 Jul 10
置信度 0.82
-
Mitigating structural and chemical defects in perovskite films is pivotal for advancing photovoltaic performance, yet achieving inclusive inhibition of defects and residual strain remains a formidable challenge. Conventional additive engineering, where modifie…
pubmed
Mi G, Lian Q, Li D, Ying Z 等
2026 Jul 25
置信度 0.82
-
The complex multi-layered security signals about fluorescence-based anti-counterfeiting technology with smartphone-based readers are getting a lot of attention. The blue/red biobased fluorescent carbon dots (CDs) with an average particle size of 2.73 nm a…
pubmed
Zhang L, Gao J, Han H, Wang XK 等
2026 Jul 25
置信度 0.82
-
A sustainable and efficient heterogeneous palladium catalyst was developed by supporting palladium nanoparticles on clinochlore as a naturally abundant clay mineral modified with carbon quantum dots (CQDs). The clinochlore-CQD support was synthesized via a str…
pubmed
Gholinejad M, Jafarpour S, Sansano JM
2026 Jul 24
置信度 0.82
-
Exact equilibrium constraints in quantum many-body systems, such as sum rules and Ward identities, can be hard to expose because local currents are distributional and equal-time commutators may contain anomaly-like contact terms. We present a simple geometric …
pubmed
Pham-Van H
2026 Jun
置信度 0.82
-
Qiskit is an open-source framework for working with noisy quantum computers at the level of pulses, circuits, and algorithms. https://qiskit.org
openalex
Gadi Aleksandrowicz, Thomas Alexander, Panagiotis Kl. Barkoutsos, Luciano Bello 等
2019-01-23
置信度 0.72
Computer scienceOpen sourceSoftwareProgramming language
-
pubmed
Alam A, Agrawal GP, Foudah AI, Ahmad A 等
2026 Aug 4
置信度 0.82
-
pubmed
Jrad A, Naouai M, Ndengué S
2026 Aug 7
置信度 0.82
-
pubmed
Li Y, Yang Y, Lu JB
2026 Aug 7
置信度 0.82
-
pubmed
Classen A, Fernández A, Dharmasiri A, Rodriguez C 等
2026 Aug
置信度 0.82
-
pubmed
Zsidó BZ, Mernyák E, Kopasz Z, Földes F 等
2026
置信度 0.82
-
Controlling operational errors and decoherence is one of the major challenges facing the field of quantum computation and other attempts to create specified many-particle entangled states. The field of quantum error correction has developed to meet this challe…
openalex
Daniel Gottesman
1997-05-28
置信度 0.72
Quantum convolutional codeQuantum error correctionComputer scienceQuantum capacityQuantum
-
The problem of finding quantum error correcting codes is transformed into the problem of finding additive codes over the field GF(4) which are self-orthogonal with respect to a certain trace inner product. Many new codes and new bounds are presented, as well a…
openalex
A.R. Calderbank, Eric M. Rains, Peter Shor, N. J. A. Sloane
1998-07-01
置信度 0.72
Block codeLinear codeConcatenated error correction codeQubitMathematics
-
The concept of multiple particle interference is discussed, using insights provided by the classical theory of error correcting codes. This leads to a discussion of error correction in a quantum communication channel or a quantum computer. Methods of error cor…
openalex
Andrew Steane
1996-01-01
置信度 0.72
Interference (communication)Particle (ecology)QuantumPhysicsComputer science
-
Quantum computation and information is one of the most exciting developments in science and technology of the last twenty years. To achieve large scale quantum computers and communication networks it is essential not only to overcome noise in stored quantum in…
openalex
Daniel A. Lidar, Todd A. Brun, Ciarán Ryan-Anderson
2013-09-05
置信度 0.72
Quantum computerQuantum informationQuantum information scienceQuantum error correctionComputer science
-
We point out a connection between the emergence of bulk locality in AdS/CFT and the theory of quantum error correction. Bulk notions such as Bogoliubov transformations, location in the radial direction, and the holographic entropy bound all have natural CFT in…
openalex
Ahmed Almheiri, Xi Dong, Daniel Harlow
2015-04-01
置信度 0.72
Quantum error correctionOperator (biology)QuantumTheoretical physicsLocality
-
Quantum error correction is required to compensate for the fragility of the state of a quantum computer. We report the first experimental implementations of quantum error correction and confirm the expected state stabilization. A precise analysis of the decay …
openalex
David G. Cory, Mark D. Price, Werner Maas, Emanuel Knill 等
1998-09-07
置信度 0.72
Error detection and correctionQuantum error correctionComputer scienceQuantumQuantum computer
-
A group theoretic framework is introduced that simplifies the description of known quantum error-correcting codes and greatly facilitates the construction of new examples. Codes are given which map 3 qubits to 8 qubits correcting 1 error, 4 to 10 qubits correc…
openalex
A.R. Calderbank, Eric M. Rains, Peter W. Shor, N. J. A. Sloane
1997-01-20
置信度 0.72
QubitError detection and correctionQuantum error correctionComputer scienceQuantum computer
-
crossref
Dave Bacon
2013-09-05T05:03:20Z
置信度 0.70
-
crossref
Mark Wilde
2013-09-05T05:03:20Z
置信度 0.70
-
crossref
Andrew Fletcher
2013-09-05T05:03:20Z
置信度 0.70
-
openalex
Ivan Djordjevic, Ivan B. Djordjević
2012-01-01
置信度 0.72
Quantum error correctionQuantum capacityQuantum convolutional codeQuantum algorithmQuantum
-
Continuous-time quantum error correction (CTQEC) is an approach to protecting quantum information from noise in which both the noise and the error correcting operations are treated as processes that are continuous in time. This chapter investigates CTQEC based…
crossref
Ognyan Oreshkov
2013-09-05T05:03:20Z
置信度 0.70
quant-ph
-
crossref
Ivan B. Djordjevic
2021-02-26T10:53:22Z
置信度 0.70
-
crossref
Dave Bacon
2013-09-05T05:03:20Z
置信度 0.70
-
pubmed
Duan X, Hong Y, Fang Y, Huang J 等
2026 Jul 30
置信度 0.82
-
pubmed
Serrano-Guarinos J, Hosseinzadeh Z, Swain A, Aguilà D 等
2026 Jul 23
置信度 0.82
-
pubmed
Undseth B, Meggiato N, Wu YH, Katiraee-Far SR 等
2026 Jul
置信度 0.82
-
pubmed
Sari F, Bayrakli I, Gemici K, Eken E
2026 Jul 24
置信度 0.82
-
The residual magnetic field of the magnetic shielding system is a key factor limiting the bias stability of high-precision atomic gyroscopes. Due to the temperature dependence of hysteresis in soft magnetic materials, variations in ambient temperature can caus…
pubmed
Chen Y, Li J, Lin S, Deng Y 等
2026 Jul 8
置信度 0.82
-
pubmed
Diao Z, Tang J, Lei Z, Yu H 等
2026 Jul 8
置信度 0.82
-
pubmed
Kim C, Kang J, Kwon Y
2026 Jun 30
置信度 0.82
-
pubmed
Tang J, Wang MJ
2026 Jun 24
置信度 0.82
-
openalex
Andreas Wallraff, David Schuster, Alexandre Blais, Luigi Frunzio 等
2004-09-01
置信度 0.72
Circuit quantum electrodynamicsPhysicsQubitPhotonCavity quantum electrodynamics
-
The aim of this review is to provide quantum engineers with an introductory guide to the central concepts and challenges in the rapidly accelerating field of superconducting quantum circuits. Over the past twenty years, the field has matured from a predominant…
openalex
Philip Krantz, Morten Kjærgaard, Fei Yan, Terry P. Orlando 等
2019-06-01
置信度 0.72
QubitQuantum computerQuantum technologyQuantumPhysics
-
Superconducting qubits are leading candidates in the race to build a quantum computer capable of realizing computations beyond the reach of modern supercomputers. The superconducting qubit modality has been used to demonstrate prototype algorithms in the noisy…
openalex
Morten Kjaergaard, Mollie E. Schwartz, Jochen Braumüller, Philip Krantz 等
2019-12-17
置信度 0.72
Quantum computerQubitSuperconducting quantum computingPhysicsQuantum error correction
-
openalex
Johannes Majer, Jerry M. Chow, Jay Gambetta, Jens Koch 等
2007-09-01
置信度 0.72
Superconducting quantum computingQubitPhysicsQuantum computerQuantum mechanics
-
Linear optics with photon counting is a prominent candidate for practical quantum computing. The protocol by Knill, Laflamme, and Milburn [2001, Nature (London) 409, 46] explicitly demonstrates that efficient scalable quantum computing with single photons, lin…
openalex
Pieter Kok, William J. Munro, Kae Nemoto, Timothy C. Ralph 等
2007-01-24
置信度 0.72
PhysicsQuantum computerQubitScalabilityQuantum error correction
-
openalex
Michael N. Leuenberger, Daniel Loss
2001-04-01
置信度 0.72
Quantum entanglementQuantum computerSuperposition principleComputer scienceQuantum
-
The subject of quantum computing brings together ideas from classical information theory, computer science, and quantum physics. This review aims to summarize not just quantum computing, but the whole subject of quantum information theory. Information can be i…
openalex
Andrew Steane
1998-02-01
置信度 0.72
PhysicsTheoretical physicsQuantum mechanics
-
Practical challenges in simulating quantum systems on classical computers have been widely recognized in the quantum physics and quantum chemistry communities over the past century. Although many approximation methods have been introduced, the complexity of qu…
openalex
Yudong Cao, Jonathan Romero, Jonathan P. Olson, Matthias Degroote 等
2019-08-30
置信度 0.72
Quantum computerQuantum algorithmQuantum technologyOpen quantum systemQuantum
-
Practical challenges in simulating quantum systems on classical computers have been widely recognized in the quantum physics and quantum chemistry communities over the past century. Although many approximation methods have been introduced, the complexity of qu…
openalex
Cao, Y, Romero, J, Olson, JP, Degroote, M 等
置信度 0.72
Quantum computerQuantum nanoscienceQuantum entanglementQuantum chemistryQuantum
-
In 2001, all-optical quantum computing became feasible with the discovery that scalable quantum computing is possible using only single-photon sources, linear optical elements, and single-photon detectors. Although it was in principle scalable, the massive res…
openalex
Jeremy L. O’Brien
2007-12-06
置信度 0.72
InterfacingScalabilityOverhead (engineering)Computer scienceQuantum computer
-
Recently a great deal of attention has been focused on quantum computation following a sequence of results [Bernstein and Vazirani, in Proc. 25th Annual ACM Symposium Theory Comput., 1993, pp. 11--20, SIAM J. Comput., 26 (1997), pp. 1277--1339], [Simon, in Pro…
openalex
Charles H. Bennett, Ethan Bernstein, Gilles Brassard, Umesh Vazirani
1997-10-01
置信度 0.72
Quantum algorithmTuring machineQuantum computerComplexity classTime complexity
-
openalex
Philip Walther, Katharina Resch, Terry Rudolph, Emmanuel Schenck 等
2005-03-01
置信度 0.72
Quantum computerComputer scienceQuantumPhysicsQuantum mechanics
-
openalex
Emanuel Knill
2005-03-01
置信度 0.72
Quantum computerComputer scienceQuantum decoherenceQuantum error correctionFault tolerance
-
Trapped ions are among the most promising systems for practical quantum computing (QC). The basic requirements for universal QC have all been demonstrated with ions, and quantum algorithms using few-ion-qubit systems have been implemented. We review the state …
openalex
Colin D. Bruzewicz, John Chiaverini, Robert McConnell, Jeremy M. Sage
2019-05-29
置信度 0.72
Quantum decoherenceQuantumQuantum computerScale (ratio)Computer science
-
openalex
Hartmut Häffner, C. F. Roos, R. Blatt
2008-10-01
置信度 0.72
PhysicsQuantum computerQubitQuantum informationQuantum teleportation
-
A remarkable application of quantum mechanical concepts of coherent superposition and quantum entanglement is a quantum computer which can solve certain problems at speeds unbelievably faster than the conventional computer. In this chapter, the basic principle…
crossref
M. Suhail Zubairy
2020-06-18T04:27:27Z
置信度 0.70
-
This chapter deals with some of the most prominent successes of quantum computing. The most well-known quantum computing algorithm, Shor’s algorithm for factoring a number in its prime factors, is discussed in details. The key to Shor’s algorithm is the quantu…
crossref
M. Suhail Zubairy
2020-06-18T04:19:28Z
置信度 0.70
-
crossref
2023-12-02T00:29:55Z
置信度 0.70
-
crossref
Jan Baumbach
2025-05-18T16:45:18Z
置信度 0.70
-
crossref
2023-12-02T00:29:55Z
置信度 0.70
-
crossref
2026-05-29T21:34:20Z
置信度 0.70
-
crossref
2020-12-22T22:31:21Z
置信度 0.70
-
pubmed
Spector SO, Satterthwaite PF, Conte M, Hsieh T 等
2026 Aug 3
置信度 0.82
-
pubmed
Sharma P, Mohanta N
2026 Aug 3
置信度 0.82
-
pubmed
Janesko BG
2026 Aug 7
置信度 0.82
-
pubmed
Gunnell J, Griffiths T, Blinov BB
2026 Aug 1
置信度 0.82
-
pubmed
Eilers S, Zegers SE
2026
置信度 0.82
-
pubmed
Rodari G, Francalanci T, Caruccio E, Hoch F 等
2026
置信度 0.82
-
Entanglement purification protocols (EPPs) and quantum error-correcting codes (QECCs) provide two ways of protecting quantum states from interaction with the environment. In an EPP, perfectly entangled pure states are extracted, with some yield D, from a mixed…
openalex
Charles H. Bennett, David P. DiVincenzo, John A. Smolin, William K. Wootters
1996-11-01
置信度 0.72
Quantum entanglementQuantum information scienceQuantum channelQuantum capacityAmplitude damping channel
-
It may seem inevitable that highly entangled quantum states are susceptible to disturbance through interaction with a decohering environment. However, certain multiqubit entangled states are well protected from common forms of decoherence as the quantum inform…
openalex
Barbara M. Terhal
2015-04-07
置信度 0.72
Quantum error correctionQuantum convolutional codeQuantum computerQuantum informationQuantum network
-
Noisy Intermediate-Scale Quantum (NISQ) technology will be available in the near future. Quantum computers with 50-100 qubits may be able to perform tasks which surpass the capabilities of today's classical digital computers, but noise in quantum gates will li…
openalex
John Preskill
2018-08-06
置信度 0.72
Quantum computerComputer scienceQubitQuantum gateComputer engineering