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Charge Qubit Storage and Its Engineered Decoherence via Microwave Cavity
Authors:GAO Yi-Bo  LI Chong
Institution:1. Applied Physics Department, Beijing University of Technology, Beijing 100022, China ;2. Institute of Theoretical Physics, the Chinese Academy of Sciences, Beijing 100080, China
Abstract:We study the entanglement of the superconducting charge qubit with the quantized electromagnetic field in a microwave cavity. It can be controlled dynamically by a classical external field threading the SQUID within the charge qubit. Utilizing the controllable quantum entanglement, we can demonstrate the dynamic process of the quantum storage of information carried by charge qubit. On the other hand, based on this engineered quantum entanglement, we can also demonstrate a progressive decoherence of charge qubit with quantum jump due to the coupling with the cavity field in quasi-classical state.
Keywords:charge qubit  engineered decoherence  quantum information storage    microwave cavity                                                                                                                      
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