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Dynamics of a Nondegenerate Three-Level Laser with Parametric Amplifier and Coupled to a Two-Mode Squeezed Vacuum Reservoir
Brazilian Journal of Physics ( IF 1.6 ) Pub Date : 2020-08-14 , DOI: 10.1007/s13538-020-00779-2
Tamirat Abebe , Chimdessa Gashu Feyisa

In this paper, the effect of a squeezed parameter and parametric amplifier on squeezing and entanglement of a correlated emission laser is thoroughly analyzed. The combination of the master equation and stochastic differential equation is presented to study the quantum features of the light. Moreover, with the aid of the resulting solutions together with the correlation properties of noise operators, the quadrature squeezing and entanglement and the mean number of photon pairs of the cavity light are determined. It is found that a large amplitude of the classical driving radiation induces a strong correlation between the top and bottom states of three-level atoms to produce a high degree of squeezing and entanglement. Furthermore, the presence of parametric amplifier and squeezed parameter is found to enhance the degree of squeezing and entanglement of the cavity light.

中文翻译:

具有参量放大器并耦合到双模压缩真空储层的非简并三级激光器的动力学

本文深入分析了压缩参数和参量放大器对相关发射激光压缩和纠缠的影响。结合主方程和随机微分方程来研究光的量子特性。此外,借助所得解以及噪声算子的相关特性,可以确定正交压缩和纠缠以及腔光的平均光子对数。发现经典驱动辐射的大振幅会引起三级原子的顶部和底部状态之间的强相关性,从而产生高度的挤压和纠缠。此外,
更新日期:2020-08-14
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