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Statistics and Light Squeezing in the Dissipative Two-Atom Jaynes-Cummings Model

机译:耗散两原子Jaynes-Cummings模型中的统计和光压缩

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The statistical and fluctuational properties of an electromagnetic field in a nonideal cavity are studied with the help of the collective two-atom Jaynes-Cummings model taking into account losses of photons and spontaneous radiation of atoms into bath modes. For the coherent state of the field and excited initial state of atoms, the general analytical expressions for the second-order field correlation function, the second-order squeezing parameters, and the squared field amplitude are obtained by solving the master equation for the density matrix. The statistics and the degree of squeezing of the cavity field mode are studied as functions of the initial field intensity and of the coefficients of the energy dissipation of the system. It is shown that, for the two-atom dissipative model, compared to the single-atom model, the type of field statistics can be changed and the maximal degree of short-term squeezing can be increased.
机译:借助集体两原子Jaynes-Cummings模型,研究了非理想腔中电磁场的统计和涨落特性,其中考虑了光子的损耗以及原子向浴模的自发辐射。对于场的相干态和原子的激发态,通过求解密度矩阵的主方程,得到了二阶场相关函数,二阶压缩参数和平方场振幅的一般解析表达式。 。研究了腔场模的统计和压缩程度与初始场强以及系统能量耗散系数的关系。结果表明,对于两原子耗散模型,与单原子模型相比,可以改变场统计的类型,并且可以增加短期压缩的最大程度。

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