Controllable quantum information network with a superconducting system |
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Authors: | Feng-yang Zhang Bao Liu Zi-hong Chen Song-lin Wu He-shan Song |
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Affiliation: | 1. School of Physics and Materials Engineering, Dalian Nationalities University, Dalian 116600, China;2. Beijing Computational Science Research Center (CSRC), Beijing 100084, China;3. School of Physics and Optoelectronic Technology, Dalian University of Technology, Dalian 116024, China |
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Abstract: | We propose a controllable and scalable architecture for quantum information processing using a superconducting system network, which is composed of current-biased Josephson junctions (CBJJs) as tunable couplers between the two superconducting transmission line resonators (TLRs), each coupling to multiple superconducting qubits (SQs). We explicitly demonstrate that the entangled state, the phase gate, and the information transfer between any two selected SQs can be implemented, respectively. Lastly, numerical simulation shows that our scheme is robust against the decoherence of the system. |
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Keywords: | Quantum information Superconducting qubit |
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