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A Maxwell-Schr?dinger solver for quantum optical few-level systems

机译:用于量子光学几级系统的Maxwell-Schr?dinger求解器

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The msprop program presented in this work is capable of solving the Maxwell-Schr?dinger equations for one or several laser fields propagating through a medium of quantum optical few-level systems in one spatial dimension and in time. In particular, it allows to numerically treat systems in which a laser field interacts with the medium with both its electric and magnetic component at the same time. The internal dynamics of the few-level system is modeled by a quantum optical master equation which includes coherent processes due to optical transitions driven by the laser fields as well as incoherent processes due to decay and dephasing. The propagation dynamics of the laser fields is treated in slowly varying envelope approximation resulting in a first order wave equation for each laser field envelope function. The program employs an Adams predictor formula second order in time to integrate the quantum optical master equation and a Lax-Wendroff scheme second order in space and time to evolve the wave equations for the fields. The source function in the Lax-Wendroff scheme is specifically adapted to allow taking into account the simultaneous coupling of a laser field to the polarization and the magnetization of the medium. To reduce execution time, a customized data structure is implemented and explained. In three examples the features of the program are demonstrated and the treatment of a system with a phase-dependent cross coupling of the electric and magnetic field component of a laser field is shown.
机译:在这项工作中提出的msprop程序能够解决一个或几个激光场的Maxwell-Schr?dinger方程,该一个或几个激光场在一个空间维度和时间范围内通过量子光学级系统传播。特别地,其允许对其中激光场同时与具有其电和磁成分的介质相互作用的系统进行数值处理。少数级系统的内部动力学由一个量子光学主方程来建模,该方程包括由激光场驱动的光跃迁引起的相干过程,以及由衰减和移相引起的不相干过程。以缓慢变化的包络近似处理激光场的传播动力学,从而为每个激光场包络函数生成一阶波动方程。该程序在时间和空间上采用了第二阶的Adams预测器公式来积分量子光学主方程,并在空间和时间上采用了第二阶的Lax-Wendroff方案来演化场的波动方程。 Lax-Wendroff方案中的源函数特别适合于考虑将激光场与介质的极化和磁化同时耦合的情况。为了减少执行时间,将实现并说明定制的数据结构。在三个示例中,演示了程序的功能,并显示了对具有激光场的电场和磁场分量的相位依赖的交叉耦合的系统的处理。

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