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Non-Gaussianity dynamics of two-mode squeezed number states subject to different types of noise based on cumulant theory 被引量:1
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作者 Shaohua Xiang xixiang zhu Kehui Song 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第10期181-189,共9页
We provide a measure to characterize the non-Gaussianity of phase-space function of bosonic quantum states based on the cumulant theory. We study the non-Gaussianity dynamics of two-mode squeezed number states by anal... We provide a measure to characterize the non-Gaussianity of phase-space function of bosonic quantum states based on the cumulant theory. We study the non-Gaussianity dynamics of two-mode squeezed number states by analyzing the phase-averaged kurtosis for two different models of decoherence: amplitude damping model and phase damping model.For the amplitude damping model, the non-Gaussianity is very fragile and completely vanishes at a finite time. For the phase damping model, such states exhibit rich non-Gaussian characters. In particular, we obtain a transition time that such states can transform from sub-Gaussianity into super-Gaussianity during the evolution. Finally, we compare our measure with the existing measures of non-Gaussianity under the independent dephasing environment. 展开更多
关键词 NON-GAUSSIANITY CUMULANTS squeezed number states DECOHERENCE
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