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Nonlinear photon transport in a semiconductor waveguide-cavity system containing a single quantum dot: Anharmonic cavity-QED regime

机译:包含单个量子点的半导体波导-腔系统中的非线性光子传输:非谐振腔-QED机制

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We present a semiconductor master equation technique to study the input/output characteristics of coherent photon transport in a semiconductor waveguide-cavity system containing a single quantum dot. We use this approach to investigate the effects of photon propagation and anharmonic cavity-QED for various dot-cavity interaction strengths, including weakly-coupled, intermediately-coupled, and strongly-coupled regimes. We demonstrate that for mean photon numbers much less than 0.1, the commonly adopted weak excitation (single quantum) approximation breaks down, even in the weak coupling regime. As a measure of the multiphoton correlations, we compute the Fano factor and the correlation error associated with making a semiclassical approximation. We also explore the role of electron-acoustic-phonon scattering and find that phonon-mediated scattering plays a qualitatively important role on the light propagation characteristics. As an application of the theory, we simulate a conditional phase gate at a phonon bath temperature of 20 K in the strong coupling regime.
机译:我们提出一种半导体主方程技术,以研究包含单个量子点的半导体波导腔系统中相干光子传输的输入/输出特性。我们使用这种方法来研究光子传播和非谐腔QED对各种点-腔相互作用强度(包括弱耦合,中间耦合和强耦合状态)的影响。我们证明,对于平均光子数远小于0.1的情况,即使在弱耦合状态下,通常采用的弱激发(单量子)近似也将分解。作为多光子相关性的度量,我们计算Fano因子和与进行半经典近似相关的相关误差。我们还探索了电子-声子-声子散射的作用,并发现声子介导的散射在光传播特性上起着定性的重要作用。作为该理论的应用,我们在强耦合条件下模拟了声子浴温度为20 K时的条件相门。

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