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Comparison of Different Classical, Semiclassical, and Quantum Treatments of Light-Matter Interactions: Understanding Energy Conservation

机译:不同古典,半经典和量子治疗的比较浅品相互动:了解节能

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The optical response of an electronic two-level system (TLS) coupled to an incident continuous wave (cw) electromagnetic (EM) field is simulated explicitly in one dimension by the following five approaches: (i) the coupled Maxwell-Bloch equations, (ii) the optical Bloch equation (OBE), (iii) Ehrenfest dynamics, (iv) the Ehrenfest+R approach, and (v) classical dielectric theory (CDT). Our findings are as follows: (i) standard Ehrenfest dynamics predict the correct optical signals only in the linear response regime where vacuum fluctuations are not important; (ii) both the coupled Maxwell-Bloch equations and CDT predict incorrect features for the optical signals in the linear response regime due to a double-counting of self-interaction; (iii) by exactly balancing the effects of self-interaction versus the effects of quantum fluctuations (and insisting on energy conservation), the Ehrenfest+R approach generates the correct optical signals in the linear regime and slightly beyond, yielding, e.g., the correct ratio between the coherent and incoherent scattering EM fields. As such, Ehrenfest+R dynamics agree with dynamics from the quantum OBE, but whereas the latter is easily applicable only for a single TLS in vacuum, the former should be applicable to large systems in environments with arbitrary dielectrics. Thus, this benchmark study suggests that the Ehrenfest+R approach may be very advantageous for simulating light-matter interactions semiclassically.
机译:耦合到入射连续波(CW)电磁(EM)场的电子双层系统(TLS)的光学响应在一个维度下明确地模拟了以下五个方法:(i)耦合的Maxwell-Bloch方程( ii)光学波黑方程(OBE),(III)EHERFEST Dynamics,(IV)EHENFEST + R方法,和(V)古典介电理论(CDT)。我们的研究结果如下:(i)标准的Ehfest Dynamics仅在线性响应状态下预测正确的光信号,其中真空波动并不重要; (ii)耦合的MaxWell-Bloch方程和CDT由于自交互的双计数而预测了线性响应制度中的光信号的不正确特征; (iii)通过完全平衡自相互作用的影响与量子波动的影响(并坚持节能),Ehrenfest + R方法在线性方案中产生正确的光信号,略微超过,屈服,例如正确的相干和非相干散射EM场之间的比率。因此,Ehrenfest + R动力学与量子Obe的动态同意,而后者只能在真空中的单个TLS中很容易适用,而前者应该适用于具有任意电介质的环境中的大型系统。因此,该基准研究表明,EHENFEST + R方法对于模拟半晶体的相互作用可能是非常有利的。

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