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Controllably Coupling Superconducting Charge and Flux Qubits by Using Nanomechanical Resonator 被引量:1
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作者 郭羊青 姜年权 《Chinese Physics Letters》 SCIE CAS CSCD 2017年第5期9-12,共4页
We propose an effective mechanism to couple superconducting charge and flux qubits by using a quantized nanomechanical resonator. The coupling between the charge and flux qubits can be controlled by the external flux ... We propose an effective mechanism to couple superconducting charge and flux qubits by using a quantized nanomechanical resonator. The coupling between the charge and flux qubits can be controlled by the external flux of the charge qubit. Under the strong coupling limR, an iSWAP gate can be generated by this scheme. The experimental feasibility in our scheme is also presented. 展开更多
关键词 Controllably Coupling Superconducting Charge and Flux Qubits by Using Nanomechanical Resonator
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利用LC电路耦合多个磁通量子位实现制备Cluster态的有效方案
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作者 郭羊青 姜年权 《温州大学学报(自然科学版)》 2017年第3期43-48,共6页
基于超导LC电路与多个超导磁通量子位的耦合以及可控时变电磁场(TDEF)对器件之间耦合的调控作用,提出了一步制备Cluster态的有效方案,并给出了该方案在实验上可行性的简要分析.
关键词 Cluster态 磁通量子位 LC电路
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Entanglement properties of superconducting qubits coupled to a semi-infinite transmission line
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作者 郭羊青 陈平形 李剑 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第6期127-134,共8页
Quantum entanglement, a key resource in quantum information processing, is reduced by interaction between the quantum system concerned and its unavoidable noisy environment. Therefore it is of particular importance to... Quantum entanglement, a key resource in quantum information processing, is reduced by interaction between the quantum system concerned and its unavoidable noisy environment. Therefore it is of particular importance to study the dynamical properties of entanglement in open quantum systems. In this work, we mainly focus on two qubits coupled to an adjustable environment, namely a semi-infinite transmission line. The two qubits' relaxations, through individual channels or collective channel or both, can be adjusted by the qubits' transition frequencies. We examine entanglement dynamics in this model system with initial Werner state, and show that the phenomena of entanglement sudden death and revival can be observed. Due to the hardness of preparing the Werner state experimentally, we introduce a new type of entangled state called pseudo-Werner state, which preserves as much entangling property as the Werner state, and more importantly,it is experiment friendly. Furthermore, we provide detailed procedures for generating pseudo-Werner state and studying entanglement dynamics with it, which can be straightforwardly implemented in a superconducting waveguide quantum electrodynamics system. 展开更多
关键词 superconducting qubits quantum entanglement Werner state
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