论文标题

激光束缚的激子的微观理论

Microscopic theory of excitons bound by light

论文作者

Kumar, Sangeet S., Parish, Meera M., Levinsen, Jesper

论文摘要

从理论上讲,我们在微腔中很好地研究了半导体量子的场景,在微腔内,在其中布置带的条带结构,以使光学激发的电子孔对无法形成库仑结合的激子态。但是,仍然可以形成激子极化子(部分,部分,部分准粒子),其中激子通过微腔光子的交换而不是通过库仑相互作用结合。使用图表理论,我们确定了半导体微腔的光谱响应,其中包括激子 - 果龙共振以及未结合的电子孔对的连续体。我们的方法还使我们访问了激子极化子的光子分数和电子孔波函数。特别是,我们获得了激子受光子交换绑定的条件,我们表明库仑相互作用可以增强大型腔光子频率下的结合。我们对光谱响应的结果与最近对掺杂的量子井的实验非常吻合[E. Cortese等,Nat。物理。 17,31(2021)]。

We theoretically investigate the scenario of a semiconductor quantum well in a microcavity, where the band structure is arranged such that optically excited electron-hole pairs cannot form Coulomb-bound excitonic states. However, it is still possible to form exciton polaritons (part-light, part-matter quasiparticles), where the excitons are bound via the exchange of microcavity photons rather than via Coulomb interactions. Using a diagrammatic theory, we determine the spectral response of the semiconductor microcavity, which includes exciton-polariton resonances as well as a continuum of unbound electron-hole pairs. Our method also gives us access to the photon fraction and the electron-hole wave function of the exciton polariton. In particular, we obtain the conditions under which an exciton is bound by photon exchange and we show that Coulomb interactions can enhance binding at large cavity photon frequencies. Our results for the spectral response are in good agreement with a recent experiment on doped quantum wells [E. Cortese et al., Nat. Phys. 17, 31 (2021)].

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