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Generating Squeezed States of Nanomechanical Resonator via a Flux Qubit in a Hybrid System

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【作者】 王朝全邹健张智明

【Author】 Chao-Quan Wang;Jian Zou;Zhi-Ming Zhang;School of Physics,Beijing Institute of Technology;Laboratory of Nanophotonic Functional Materials and Devices,SIPSE and LQIT,South China Normal University;

【机构】 School of Physics,Beijing Institute of TechnologyLaboratory of Nanophotonic Functional Materials and Devices,SIPSE and LQIT,South China Normal University

【摘要】 We propose a scheme for generating squeezed states based on a superconducting hybrid system.Our system consists of a nanomechanical resonator,a superconducting flux qubit,and a superconducting transmission line resonator.Using our proposal,one can easily generate the squeezed states of the nanomechanical resonator.In our scheme,the nonlinear interaction between the nanomechanical resonator and the superconducting transmission line resonator can be implemented by the flux qubit as ’nonlinear media’ with a tunable Josephson energy.The realization of the nonlinearity does not need any operations on the flux qubit and just needs to adiabatically keep it at the ground state,which can greatly decrease the effect of the decoherence of the flux qubit on the squeezed efficiency.

【Abstract】 We propose a scheme for generating squeezed states based on a superconducting hybrid system.Our system consists of a nanomechanical resonator,a superconducting flux qubit,and a superconducting transmission line resonator.Using our proposal,one can easily generate the squeezed states of the nanomechanical resonator.In our scheme,the nonlinear interaction between the nanomechanical resonator and the superconducting transmission line resonator can be implemented by the flux qubit as ’nonlinear media’ with a tunable Josephson energy.The realization of the nonlinearity does not need any operations on the flux qubit and just needs to adiabatically keep it at the ground state,which can greatly decrease the effect of the decoherence of the flux qubit on the squeezed efficiency.

【基金】 Supported by the National Natural Science Foundation of China under Grant Nos 11274043 and 60978009;the Major Research Plan of the National Natural Science Foundation of China under Grant No 91121023
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2016年02期
  • 【分类号】TN751.2;O413
  • 【下载频次】6
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