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Decoherence in semiconductor cavity QED systems due to phonon couplings

机译:由声子耦合引起的半导体腔QED系统中的消相干

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摘要

We investigate the effect of electron-phonon interactions on the coherence properties of single photons emitted from a semiconductor cavity QED (quantum electrodynamics) system, i.e., a quantum dot embedded in an optical cavity. The degree of indistinguishability, governing the quantum mechanical interference between two single photons, is calculated as a function of important parameters describing the cavity QED system and the phonon reservoir, e.g., cavity quality factor, light-matter coupling strength, temperature, and phonon lifetime. We show that non-Markovian effects play an important role in determining the coherence properties for typical parameter values and establish the conditions under which a Markovian approximation may be applied. The calculations are performed using a recently developed second-order perturbation theory, and the limits of validity are established by comparing to an exact diagonalization approach. We find that for large cavity decay rates the perturbation theory may break down.
机译:我们研究了电子-声子相互作用对从半导体腔QED(量子电动力学)系统(即嵌入光腔中的量子点)发射的单个光子的相干特性的影响。根据描述腔QED系统和声子储集层的重要参数(例如腔质量因数,光物质耦合强度,温度和声子寿命),计算控制两个单光子之间的量子机械干涉的不可区分度。 。我们表明,非马尔可夫效应在确定典型参数值的相干性方面起着重要作用,并建立了可应用马尔可夫近似的条件。使用最新开发的二阶微扰理论进行计算,并通过与精确的对角化方法进行比较来确定有效性的极限。我们发现,对于大的腔衰变率,微扰理论可能会崩溃。

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