...
首页> 外文期刊>Physical review >Quantum theory of the emission spectrum from quantum dots coupled to structured photonic reservoirs and acoustic phonons
【24h】

Quantum theory of the emission spectrum from quantum dots coupled to structured photonic reservoirs and acoustic phonons

机译:量子点与结构化光子库和声子耦合的发射光谱的量子理论

获取原文
获取原文并翻译 | 示例
           

摘要

Electron-phonon coupling in semiconductor quantum dots plays a significant role in determining the optical properties of excited excitons, especially the spectral nature of emitted photons. This paper presents a comprehensive theory and analysis of emission spectra from artificial atoms or quantum dots coupled to structured photon reservoirs and acoustic phonons, when excited with incoherent pump fields. As specific examples of structured reservoirs, we chose a Lorentzian cavity and a slow-light coupled-cavity waveguide, which have both been explored experimentally. For the case of optical cavities, we directly compare and contrast the spectra from three well-known and distinct theoretical approaches to treat electron-phonon coupling, including a Markovian polaron master equation, a non-Markovian phonon correlation expansion technique, and a semiclassical linear susceptibility approach, and we point out the limitations of these models. For the cavity-QED polaron master equation, which treats the cavity-mode operator at the level of a system operator, we give closed form analytical solutions to the phonon-assisted scattering rates in the weak excitation approximation, fully accounting for temperature, cavity-exciton detuning, and cavity-dot coupling. We also show explicitly why the semiclassical linear susceptibility approach fails to correctly account for phonon-mediated cavity feeding. For weakly coupled cavities, we calculate the optical spectra using a more general photon reservoir polaron master-equation approach, and explain its differences from the above approaches in the low-Q limit of a Lorentzian cavity. We subsequently use this general reservoir approach to calculate the emission spectra from quantum dots coupled to slow-light photonic crystal waveguides, which demonstrate a number of striking photon-phonon coupling effects.
机译:半导体量子点中的电子-声子耦合在确定激发激子的光学性质(尤其是发射的光子的光谱性质)方面起着重要作用。本文介绍了在不相干的泵浦场激励下,与结构化光子储层和声子耦合的人工原子或量子点的发射光谱的综合理论和分析。作为结构化储层的具体例子,我们选择了洛伦兹腔和慢光耦合腔波导,它们都是通过实验探索的。对于光腔,我们直接比较和对比了三种著名的和不同的用于处理电子-声子耦合的理论方法的光谱,包括马尔可夫极化子主方程,非马尔可夫声子相关展开技术和半经典线性敏感性方法,我们指出了这些模型的局限性。对于腔QED极化子主方程,该方程在系统算子的水平上处理腔模算子,我们在弱激发近似中给出了声子辅助散射率的封闭形式解析解,充分考虑了温度,激子失谐和腔点耦合。我们还明确表明了为什么半经典线性磁化率方法无法正确地解释声子介导的空腔进料。对于弱耦合腔,我们使用更通用的光子储层极化子主方程方法计算光谱,并解释其与上述方法在洛伦兹腔的低Q极限方面的差异。随后,我们使用这种通用的储层方法来计算耦合到慢光光子晶体波导的量子点的发射光谱,这证明了许多惊人的光子-声子耦合效应。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号