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The effects of atom-cavity coupling constant on physical observables for different transitions

机译:原子腔耦合常数对不同转变的物理观测的影响

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The aim of this work is to investigate the changing effects of the atom-cavity coupling constant on an atom-cavity system. A three-level atom in the A configuration with q-photon transition between levels 2 and 3 is confined in a single-mode Fabry-Perot optical cavity. To solve the master equation of this system in the steady-state by using the appropriate physical quantities, the matrix continued fractions method for recurrence equations is applied. The behavior of physical observables including atom-field correlation, mean photon number, and second-order coherence function is discussed. The effect of altering the atom-cavity coupling constant for different transitions on these observables is fully considered. The results of calculations show that by increasing this coupling constant, the range of atom-cavity correlation becomes longer, the maximum value of the output mean photon number from the cavity remains almost constant, the broadening in the curves of the mean photon number increases and the lasing process is amplified in the system. Finally, the transformation of the three-level atom into a two-level one under several specific conditions in a four-photon transition case has been studied. The obtained results of the two-level atomic pattern are adequately confirmed by the simulations related to the three-level atom.
机译:这项工作的目的是研究原子腔耦合恒定在原子腔系统上的变化效果。在2级和3之间的Q-Photon转换的配置中的三级原子被限制在单模法布里 - 珀罗光学腔中。为了通过使用适当的物理量在稳定状态下解决该系统的主方程,施加了用于复发方程的基质继续分数方法。讨论了包括原子场相关,平均光子数和二阶相干功能的物理观察到的行为。完全考虑改变不同转变的原子腔耦合常数的效果。计算结果表明,通过增加该耦合常数,原子腔相关的范围变长,来自腔的输出平均光子数的最大值几乎恒定,平均光子数的曲线中的凸起增加和在系统中扩增激光过程。最后,已经研究了在四光子过渡壳体中的几个特定条件下将三级原子转化为两级的原子。通过与三级原子相关的模拟充分确认了两级原子图案的所得结果。

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