论文标题

从支柱微腔发出的光的量子统计数据

Quantum statistics of light emitted from a pillar microcavity

论文作者

Khudaiberganov, T. A., Arakelian, S. M.

论文摘要

研究了带有嵌入式量子孔的柱子半导体微腔激发的激发层发出的光的量子行为。考虑到裸露的激子和光子模式作为耦合的量子振荡器,可以准确地考虑非线性和耗散效应。特别是,使用量子状态在量子相空间中的呈现方法(即$ p $功能和wigner函数)中,我们研究激光器和激光片photon-photon deatunling对发射光子的二阶相关功能的影响。我们确定了发射光的束,巨型束和抗抗抗激素的现象的条件。特别是,我们预测了巨型束对较大激子与光子种群比率的效果。在支持双态性方向的参数域内,我们证明了光子束的效果。

A quantum behavior of the light emitted by exciton polaritons excited in a pillar semiconductor microcavity with embedded quantum well is investigated. Considering the bare excitons and photon modes as coupled quantum oscillators allows for an accurate accounting of the nonlinear and dissipative effects. In particular, using the method of quantum states presentation in a quantum phase space via quasiprobability functions (namely, a $P$-function and a Wigner function), we study the effect of the laser and the exciton-photon detuning on the second order correlation function of the emitted photons. We determine the conditions for the phenomena of bunching, giant bunching, and antibunching of the emitted light. In particular, we predict the effect of a giant bunching for the case of a large exciton to photon population ratio. Within the domain of parameters supporting a bistability regime we demonstrate the effect of bunching of photons.

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