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Spin Ensembles Coupled to Superconducting Resonators: A Scalable Architecture for Solid-State Quantum Computing
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作者 陈昌永 侯其哲 李韶华 《Communications in Theoretical Physics》 SCIE CAS CSCD 2014年第8期196-204,共9页
A design is proposed for scalable solid-state quantum computing, which is based on collectively enhanced magnetic coupling between nitrogen-vacancy center ensembles and superconducting transmission line resonators int... A design is proposed for scalable solid-state quantum computing, which is based on collectively enhanced magnetic coupling between nitrogen-vacancy center ensembles and superconducting transmission line resonators interconnected by current-biased Josephson junction superconducting phase qubit. In this hybrid system, we realize distant multi-qubit controlled phase gate operations and generate distant multi-qubit entangled W-like states, being indispensable resource to quantum computation. Our proposed architecture consists of solid-state spin ensembles and circuit QED, and could achieve quantum computing in a solid-state environment with high-fidelity and scalable way. The experimental feasibility is discussed, and the implementation efficiency is demonstrated numerically. 展开更多
关键词 SOLID-state quantum computing nitrogen-vacancy center SUPERCONDUCTING RESONATOR
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Quantum Mechanical Nature in Liquid NMR Quantum Computing 被引量:1
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作者 LONGGui-Lu YANHai-Yang 《Communications in Theoretical Physics》 SCIE CAS CSCD 2002年第3期305-308,共4页
The quantum nature of bulk ensemble NMR quantum computing — the center of recent heated debate, is addressed. Concepts of the mixed state and entanglement are examined, and the data in a two-qubit liquid NMR quantum ... The quantum nature of bulk ensemble NMR quantum computing — the center of recent heated debate, is addressed. Concepts of the mixed state and entanglement are examined, and the data in a two-qubit liquid NMR quantum computation are analyzed. The main points in this paper are: i) Density matrix describes the 'state' of an average particle in an ensemble. It does not describe the state of an individual particle in an ensemble; ii) Entanglement is a property of the wave function of a microscopic particle (such as a molecule in a liquid NMR sample), and separability of the density matrix cannot be used to measure the entanglement of mixed ensemble; iii) The state evolution in bulk-ensemble NMR quantum computation is quantum-mechanical; iv) The coefficient before the effective pure state density matrix, ?, is a measure of the simultaneity of the molecules in an ensemble. It reflects the intensity of the NMR signal and has no significance in quantifying the entanglement in the bulk ensemble NMR system. The decomposition of the density matrix into product states is only an indication that the ensemble can be prepared by an ensemble with the particles unentangled. We conclude that effective-pure-state NMR quantum computation is genuine, not just classical simulations. 展开更多
关键词 quantum mechanical nature NMR quantum computing mixed state ENTANGLEMENT
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Cavity-assisted quantum computing in a silicon nanostructure
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作者 唐宝 秦豪 +2 位作者 张融 刘金明 薛鹏 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第5期86-90,共5页
We present a scheme of quantum computing with charge qubits corresponding to one excess electron shared between dangling-bond pairs of surface silicon atoms that couple to a microwave stripline resonator on a chip. By... We present a scheme of quantum computing with charge qubits corresponding to one excess electron shared between dangling-bond pairs of surface silicon atoms that couple to a microwave stripline resonator on a chip. By choosing a certain evolution time, we propose the realization of a set of universal single-and two-qubit logical gates. Due to its intrinsic stability and scalability, the silicon dangling-bond charge qubit can be regarded as one of the most promising candidates for quantum computation. Compared to the previous schemes on quantum computing with silicon bulk systems, our scheme shows such advantages as a long coherent time and direct control and readout. 展开更多
关键词 quantum computing dangling-bond state
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Efficient Scheme for One-Way Quantum Computing with Radiofrequency SQUID Qubits by Adiabatic Passage
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作者 宋明玉 《Communications in Theoretical Physics》 SCIE CAS CSCD 2011年第11期837-844,共8页
We proposed an efficient scheme for constructing a quantum controlled phase-shift gate and generating thecluster states with rf superconducting quantum interference devices (SQUIDs)coupled to a microwave cavity throug... We proposed an efficient scheme for constructing a quantum controlled phase-shift gate and generating thecluster states with rf superconducting quantum interference devices (SQUIDs)coupled to a microwave cavity throughadiabatic evolution of dark eigenstates.During the operation,the spontaneous emission is suppressed since the rf SQUIDsare always in the three lowest flux states.Considering the influence from the cavity decay with achievable experimentalparameters,we numerically analyze the success probability and the fidelity for generating the two-SQUID maximallyentangled state and the controlled phase-shift gate by adiabatic passage. 展开更多
关键词 cluster states quantum computing adiabatic passage
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Quantum Mechanical Nature in Liquid NMR Quantum Computing 被引量:1
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作者 LONG Gui-Lu YAN Hai-Yang LI Yan-Song TU Chang-Cun ZHU Sheng-Jiang RUAN Dong SUN Yang TAO Jia-Xun CHEN Hao-Ming 《Communications in Theoretical Physics》 SCIE CAS CSCD 2002年第9期305-308,共4页
The quantum nature of bulk ensemble NMR quantum computing the center of recent heated debate,is addressed. Concepts of the mixed state and entanglement are examined, and the data in a two-qubit liquid NMRquantum compu... The quantum nature of bulk ensemble NMR quantum computing the center of recent heated debate,is addressed. Concepts of the mixed state and entanglement are examined, and the data in a two-qubit liquid NMRquantum computation are analyzed. The main points in this paper are: i) Density matrix describes the "state" of anaverage particle in an ensemble. It does not describe the state of an individual particle in an ensemble; ii) Entanglementis a property of the wave function of a microscopic particle (such as a molecule in a liquid NMR sample), and separabilityof the density matrix cannot be used to measure the entanglement of mixed ensemble; iii) The state evolution in bulk-ensemble NMRquantum computation is quantum-mechanical; iv) The coefficient before the effective pure state densitymatrix, e, is a measure of the simultaneity of the molecules in an ensemble. It reflects the intensity of the NMR signaland has no significance in quantifying the entanglement in the bulk ensemble NMR system. The decomposition of thedensity matrix into product states is only an indication that the ensemble can be prepared by an ensemble with theparticles unentangled. We conclude that effective-pure-state NMR quantum computation is genuine, not just classicalsimulations. 展开更多
关键词 quantum mechanical nature NMR quantum computing MIXED state ENTANGLEMENT
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Advancing Quantum Technology:Insights FormMach-Zehnder Interferometer in Quantum State Behaviour and Error Correction
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作者 Priyanka Damodarakurup Sajeev +2 位作者 ShaikAhmed Shankar Pidishety Ram Soorat 《Journal of Quantum Computing》 2024年第1期53-66,共14页
The present study delves into the application of investigating quantum state behaviour,particularly focusing on coherent and superposition states.These states,characterized by their remarkable stability and precision,... The present study delves into the application of investigating quantum state behaviour,particularly focusing on coherent and superposition states.These states,characterized by their remarkable stability and precision,have found extensive utility in various domains of quantum mechanics and quantum information processing.Coherent states are valuable for manipulating quantum systems with accuracy.Superposition states allow quantum systems to exist in numerous configurations at the same time,which paves the way for quantum computing’s capacity for parallel processing.The research accentuates the crucial role of quantum error correction(QEC)in ensuring the stability and reliability of quantum information processing systems.Quantum systems are prone to errors from decoherence and environmental noise,making QEC essential for ensuring accurate results by employing the Shor code,an error-correcting code devised by Peter Shor,it becomes feasible to detect and rectify errors that may arise during quantum computations.The Shor code detects and corrects both bit-flip and phase-flip errors,greatly enhancing the robustness of quantum information systems.This research offers insights into the multifaceted utility of MZI(Mach-Zehnder interferometer)and its relevance in the advancement of quantum technology.By integrating QEC with the capabilities of MZI,this study offers a holistic approach to advancing the precision and reliability of quantum technologies. 展开更多
关键词 Single photon interferometry Mach-Zehnder interferometer quantum error correction coherent states superposition states quantum computing fault tolerance
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Noisy-intermediate-scale quantum power system state estimation
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作者 Fei Feng Peng Zhang +1 位作者 Yifan Zhou Yacov A.Shamash 《iEnergy》 2024年第3期135-141,共7页
Quantum power system state estimation(QPSSE)offers an inspiring direction for tackling the challenge of state estimation through quantum computing.Nevertheless,the current bottlenecks originate from the scarcity of pr... Quantum power system state estimation(QPSSE)offers an inspiring direction for tackling the challenge of state estimation through quantum computing.Nevertheless,the current bottlenecks originate from the scarcity of practical and scalable QPSSE methodologies in the noisy intermediate-scale quantum(NISQ)era.This paper devises a NISQ−QPSSE algorithm that facilitates state estimation on real NISQ devices.Our new contributions include:(1)A variational quantum circuit(VQC)-based QPSSE formulation that empowers QPSSE analysis utilizing shallow-depth quantum circuits;(2)A variational quantum linear solver(VQLS)-based QPSSE solver integrating QPSSE iterations with VQC optimization;(3)An advanced NISQ-compatible QPSSE methodology for tackling the measurement and coefficient matrix issues on real quantum computers;(4)A noise-resilient method to alleviate the detrimental effects of noise disturbances.The encouraging test results on the simulator and real-scale systems affirm the precision,universal-ity,and scalability of our QPSSE algorithm and demonstrate the vast potential of QPSSE in the thriving NISQ era. 展开更多
关键词 quantum computing state estimation variational quantum linear solver noisy-intermediate-scale quantum(NISQ)era
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Quantum computation and error correction based on continuous variable cluster states 被引量:4
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作者 Shuhong Hao Xiaowei Deng +3 位作者 Yang Liu Xiaolong Su Changde Xie Kunchi Peng 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第6期18-27,共10页
Measurement-based quantum computation with continuous variables,which realizes computation by performing measurement and feedforward of measurement results on a large scale Gaussian cluster state,provides a feasible w... Measurement-based quantum computation with continuous variables,which realizes computation by performing measurement and feedforward of measurement results on a large scale Gaussian cluster state,provides a feasible way to implement quantum computation.Quantum error correction is an essential procedure to protect quantum information in quantum computation and quantum communication.In this review,we briefly introduce the progress of measurement-based quantum computation and quantum error correction with continuous variables based on Gaussian cluster states.We also discuss the challenges in the fault-tolerant measurement-based quantum computation with continuous variables. 展开更多
关键词 quantum computation quantum error correction continuous variables cluster state
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Solid-state quantum computation station
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作者 Fanming Qu Zhongqing Ji +1 位作者 Ye Tian Shiping Zhao 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第7期1-7,共7页
Solid-state quantum computation station belongs to the group 2 of manipulation of quantum state in the Synergetic Extreme Condition User Facility. Here we will first outline the research background, aspects, and objec... Solid-state quantum computation station belongs to the group 2 of manipulation of quantum state in the Synergetic Extreme Condition User Facility. Here we will first outline the research background, aspects, and objectives of the station, followed by a discussion of the recent scientific as well as technological progress in this field based on similar experimental facilities to be constructed in the station. Finally, a brief summary and research perspective will be presented. 展开更多
关键词 quantum computation superconducting qubit topological quantum state Majorana fermion
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Computational Cluster with Entangled States
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作者 Nikolay Raychev 《Journal of Applied Mathematics and Physics》 2016年第9期1777-1786,共11页
In this article the inherent computational power of the quantum entangled cluster states examined by measurement-based quantum computations is studied. By defining a common framework of rules for measurement of quantu... In this article the inherent computational power of the quantum entangled cluster states examined by measurement-based quantum computations is studied. By defining a common framework of rules for measurement of quantum entangled cluster states based on classical computations, the precise and detailed meaning of the computing power of the correlations in the quantum cluster states is made. This study exposes a connection, arousing interest, between the infringement of the realistic models that are local and the computing power of the quantum entangled cluster states. 展开更多
关键词 quantum computing computational Complexity Cluster states GATES
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Computing for power system operation and planning: Then, now, and the future
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作者 Yousu Chen Zhenyu Huang +1 位作者 Shuangshuang Jin Ang Li 《iEnergy》 2022年第3期315-324,共10页
With the global trend of pursuing clean energy and decarbonization,power systems have been evolving in a fast pace that we have never seen in the history of electrification.This evolution makes the power system more d... With the global trend of pursuing clean energy and decarbonization,power systems have been evolving in a fast pace that we have never seen in the history of electrification.This evolution makes the power system more dynamic and more distributed,with higher uncertainty.These new power system behaviors bring significant challenges in power system modeling and simulation as more data need to be analyzed for larger systems and more complex models to be solved in a shorter time period.The conventional computing approaches will not be sufficient for future power systems.This paper provides a historical review of computing for power system operation and planning,discusses technology advancements in high performance computing(HPC),and describes the drivers for employing HPC techniques.Some high performance computing application examples with different HPC techniques,including the latest quantum computing,are also presented to show how HPC techniques can help us be well prepared to meet the requirements of power system computing in a clean energy future. 展开更多
关键词 Power system computing high performance computing quantum computing contingency analysis state estimation dynamic simulation machine learning OPTIMIZATION exascale computing.
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Bridging Classical and Quantum Realms: The Conceptual and Theoretical Framework of the Advanced Observer Model
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作者 Joseph H. C. Wong 《Journal of Quantum Information Science》 2024年第4期123-157,共35页
This paper presents the Advanced Observer Model (AOM), a groundbreaking conceptual framework designed to clarify the complex and often enigmatic nature of quantum mechanics. The AOM serves as a metaphorical lens, brin... This paper presents the Advanced Observer Model (AOM), a groundbreaking conceptual framework designed to clarify the complex and often enigmatic nature of quantum mechanics. The AOM serves as a metaphorical lens, bringing the elusive quantum realm into sharper focus by transforming its inherent uncertainty into a coherent, structured ‘Frame Stream’ that aids in the understanding of quantum phenomena. While the AOM offers conceptual simplicity and clarity, it recognizes the necessity of a rigorous theoretical foundation to address the fundamental uncertainties that lie at the core of quantum mechanics. This paper seeks to illuminate those theoretical ambiguities, bridging the gap between the abstract insights of the AOM and the intricate mathematical foundations of quantum theory. By integrating the conceptual clarity of the AOM with the theoretical intricacies of quantum mechanics, this work aspires to deepen our understanding of this fascinating and elusive field. 展开更多
关键词 Advanced Observer Model AOM DETERMINACY INDETERMINACY Reverse Engineering Observer-Observed Interaction quantum Wave Function Probability Density Function PDF Probability Space Potential Space quantum computing quantum Information Processing Static Configuration SC Dynamic Configuration DC Sequence of quantum states SQS Perceptual Sequence of Observations PSO Theory of Relativity Lorentz Transformation
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Quantum Discord in any Mixture of Two Bi-Qubit Arbitrary Product States 被引量:1
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作者 王胜房 刘益民 +2 位作者 李国锋 刘先松 张战军 《Communications in Theoretical Physics》 SCIE CAS CSCD 2013年第12期667-672,共6页
Quantum discord in any mixture of two bi-qubit arbitrary product states is studied with two different approaches. In the first approach the maximM classicM correlations are obtained via numerical computations, while i... Quantum discord in any mixture of two bi-qubit arbitrary product states is studied with two different approaches. In the first approach the maximM classicM correlations are obtained via numerical computations, while in the second approach they are analytically derived. Quantum correlations captured with both approaches completely coincide, as is in accord with the conclusion of Cen et al. [Phys. Rev. A 83 (2011) 054101]. The symmetry reduction of the concerned states concerning quantum correlations is accomplished. The captured discords are amply analyzed so that some inherent distinct properties are revealed. 展开更多
关键词 quantum discord numerical computation approach analytic expression any mixture two bi-qubit arbitrary product states
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About Factorization of Quantum States with Few Qubits
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作者 G. V. López G. Montes +1 位作者 M. Avila J. Rueda-Paz 《Journal of Applied Mathematics and Physics》 2017年第2期469-480,共12页
Through the study of the factorization conditions of a wave function made up of two, three and four qubits, we propose an analytical expression which can characterize entangled states in terms of the coefficients of t... Through the study of the factorization conditions of a wave function made up of two, three and four qubits, we propose an analytical expression which can characterize entangled states in terms of the coefficients of the wave function and density matrix elements. 展开更多
关键词 ENTANGLED state Factorized state DECOHERENCE quantum computing and Information Chain of SPINS System
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Possible schemes of calculation modeling in a quantum computer
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作者 Vladimir Voronov 《Natural Science》 2010年第8期923-927,共5页
In the present work a possibility of computation modeling, which should be realized in a real quantum computer, is discussed. In this connection two models of a device, which work is determined by the structure and dy... In the present work a possibility of computation modeling, which should be realized in a real quantum computer, is discussed. In this connection two models of a device, which work is determined by the structure and dynamics of real molecular systems are reported. 展开更多
关键词 quantum computERS Strong-Correlated Systems ENTANGLEMENT of stateS
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Threshold-independent method for single-shot readout of spin qubits in semiconductor quantum dots
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作者 胡睿梓 祝圣凯 +9 位作者 张鑫 周圆 倪铭 马荣龙 罗刚 孔真真 王桂磊 曹刚 李海欧 郭国平 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第1期274-279,共6页
The single-shot readout data process is essential for the realization of high-fidelity qubits and fault-tolerant quantum algorithms in semiconductor quantum dots. However, the fidelity and visibility of the readout pr... The single-shot readout data process is essential for the realization of high-fidelity qubits and fault-tolerant quantum algorithms in semiconductor quantum dots. However, the fidelity and visibility of the readout process are sensitive to the choice of the thresholds and limited by the experimental hardware. By demonstrating the linear dependence between the measured spin state probabilities and readout visibilities along with dark counts, we describe an alternative threshold-independent method for the single-shot readout of spin qubits in semiconductor quantum dots. We can obtain the extrapolated spin state probabilities of the prepared probabilities of the excited spin state through the threshold-independent method. We then analyze the corresponding errors of the method, finding that errors of the extrapolated probabilities cannot be neglected with no constraints on the readout time and threshold voltage. Therefore, by limiting the readout time and threshold voltage, we ensure the accuracy of the extrapolated probability. We then prove that the efficiency and robustness of this method are 60 times larger than those of the most commonly used method. Moreover, we discuss the influence of the electron temperature on the effective area with a fixed external magnetic field and provide a preliminary demonstration for a single-shot readout of up to 0.7K/1.5T in the future. 展开更多
关键词 quantum computation quantum dot quantum state readout
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A proposal for preparation of cluster states with linear optics 被引量:1
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作者 Le Ju Ming Yang Peng Xue 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第3期55-60,共6页
Measurement-based quantum computation in an optical setup shows great promise towards the implementation oflarge-scale quantum computation. The difficulty of measurement-based quantum computation lies in the preparati... Measurement-based quantum computation in an optical setup shows great promise towards the implementation oflarge-scale quantum computation. The difficulty of measurement-based quantum computation lies in the preparation ofcluster state. In this paper, we propose the method of generating the large-scale cluster state, which is a platform formeasurement-based quantum computation. In order to achieve more complex quantum circuits, the preparation protocolof N-photon cluster state will be proposed as a generalization of the preparation of four- and five-photon cluster states.Furthermore, our proposal is experimentally feasible. 展开更多
关键词 measurement-based quantum computing cluster states linear optical elements
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量子信息技术工程领域发展战略
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作者 陆军 任勇 +2 位作者 栾添 刘朔宇 聂伟涛 《国防科技》 2025年第3期1-7,共7页
量子科技是具有重大科学意义和战略价值的前沿领域,是引领新一轮科技革命和产业变革的重要力量。当前量子科技的基础性、原理性问题已初步解决,正处于关键技术、核心产品从科技创新成果向产业化转移的关键时期。全面梳理量子信息技术工... 量子科技是具有重大科学意义和战略价值的前沿领域,是引领新一轮科技革命和产业变革的重要力量。当前量子科技的基础性、原理性问题已初步解决,正处于关键技术、核心产品从科技创新成果向产业化转移的关键时期。全面梳理量子信息技术工程发展的国内外现状、工程化进展及存在问题,从国家顶层战略出发提出建设相关建议,为后续研究提供参考。 展开更多
关键词 量子信息 量子态 量子计算 量子感知 量子信息系统 量子调控
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Experimental demonstration of reconstructing quantum states with generative models
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作者 Xuegang Li Wenjie Jiang +9 位作者 Ziyue Hua Weiting Wang Xiaoxuan Pan Weizhou Cai Zhide Lu Jiaxiu Han Rebing Wu Chang-Ling Zou Dong-Ling Deng Luyan Sun 《Science Bulletin》 2025年第10期1572-1575,共4页
With the rapid development of quantum devices across various platforms[1–4],reconstructing quantum many-body states from experimentally measured data posts a crucial challenge.Straightforward quantum state tomography... With the rapid development of quantum devices across various platforms[1–4],reconstructing quantum many-body states from experimentally measured data posts a crucial challenge.Straightforward quantum state tomography(QST)is only applicable for small systems[5],since the required classical computing resources,such as the number of measurements and the memory size,grow exponentially as the system size increases. 展开更多
关键词 quantum state tomography qst quantum many body states classical computing resources classical computing resourcessuch generative models exponential growth experimentally measured data quantum devices
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Cluster-state preparation in thermal cavities without single-qubit operation
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作者 张小龙 冯芒 高克林 《Chinese Physics B》 SCIE EI CAS CSCD 2008年第1期43-48,共6页
A potential scheme is proposed for generating cluster states of many atoms in cavity quantum electradynamics (QED), in which an unorthodox encoding is employed with the ground state being qubit [0〉 while two closel... A potential scheme is proposed for generating cluster states of many atoms in cavity quantum electradynamics (QED), in which an unorthodox encoding is employed with the ground state being qubit [0〉 while two closely spaced upper states being qubit |1〉. Throughout the scheme the cavities can be in thermal states but axe only virtually excited. We show how to create the cluster states by performing a two-step hut no single-qubit operation. Discussion is also carried out on the experimental feasibility of our scheme. 展开更多
关键词 cluster-state cavity QED ENTANGLEMENT quantum computing
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