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首页> 外文期刊>Journal of Modern Optics >Comparison of semiclassical and quantum models of a two-level atom-cavity QED system in the strong coupling regime
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Comparison of semiclassical and quantum models of a two-level atom-cavity QED system in the strong coupling regime

机译:在强耦合状态下双层原子腔QED系统的半校集和量子模型的比较

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摘要

We present a numerical study comparing semiclassical and quantum models of a damped, strongly interacting cavity QED system composed of a single two-level atom interacting with a single quantized cavity mode driven externally by a tunable monochromatic field. We compute the steady state transmission spectrum of the coupled system under each model and show that in the strong coupling regime, the two models yield starkly different results. The fully quantum mechanical model of the system correctly yields the expected multiphoton transmission spectra while the semiclassical approach results in a bistable spectrum.
机译:我们介绍了一种数值研究,比较了由由可调谐单色场在外部驱动的单个量化腔模式的单个两级原子相互作用的单个两级原子与单个两级原子相互作用的分解强的腔QED系统的数值研究。 我们在每个模型下计算耦合系统的稳态传输频谱,并显示在强的耦合状态下,两种模型产生毫不含糊的结果。 系统的完全量子机械模型正确地产生预期的多光子透射光谱,而微晶接种导致双稳态光谱。

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