典型文献
Nonlocal nonreciprocal optomechanical circulator
文献摘要:
A nonlocal circulator protocol is proposed in a hybrid optomechanical system.By analogy with quantum communi-cation,using the input-output relationship,we establish the quantum channel between two optical modes with long-range.The three-body nonlocal interaction between the cavity and the two oscillators is obtained by eliminating the optomechan-ical cavity mode and verifying the Bell-CHSH inequality of continuous variables.By introducing the phase accumulation between cyclic interactions,the unidirectional transmission of quantum state between the optical mode and two mechan-ical modes is achieved.The results show that nonreciprocal transmissions are achieved as long as the accumulated phase reaches a certain value.In addition,the effective interaction parameters in our system are amplified,which reduces the difficulty of the implementation of our protocol.Our research can provide potential applications for nonlocal manipulation and transmission control of quantum platforms.
文献关键词:
中图分类号:
作者姓名:
Ji-Hui Zheng;Rui Peng;Jiong Cheng;Jing An;Wen-Zhao Zhang
作者机构:
School of Mathematical Sciences,Guizhou Normal University,Guiyang 550025,China;School of Physical Science and Technology,Ningbo University,Ningbo 315211,China;School of Physics,Dalian University of Technology,Dalian 116024,China
文献出处:
引用格式:
[1]Ji-Hui Zheng;Rui Peng;Jiong Cheng;Jing An;Wen-Zhao Zhang-.Nonlocal nonreciprocal optomechanical circulator)[J].中国物理B(英文版),2022(05):369-377
A类:
optomechan
B类:
Nonlocal,nonreciprocal,optomechanical,circulator,nonlocal,protocol,proposed,hybrid,system,By,analogy,quantum,communi,using,input,output,relationship,establish,channel,between,two,optical,modes,long,range,three,body,cavity,oscillators,obtained,by,eliminating,verifying,Bell,CHSH,inequality,continuous,variables,introducing,phase,accumulation,cyclic,interactions,unidirectional,state,achieved,results,show,that,transmissions,are,accumulated,reaches,certain,value,In,addition,effective,parameters,our,amplified,which,reduces,difficulty,implementation,Our,research,can,provide,potential,applications,manipulation,control,platforms
AB值:
0.581265
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