论文标题
在原子薄的半导体微腔中,来自Biexcitons的双重四波混合和正交平方
Bichromatic four-wave mixing and quadrature-squeezing from biexcitons in atomically thin semiconductor microcavities
论文作者
论文摘要
非线性光学效应,例如四波混合和挤压光的产生在光学设备和光源中无处不在。对于以低光电功率运行的新设备,在半导体微腔中,由两光敏感的绑定biexciton产生的共鸣非线性是一个有趣的前瞻性平台。由于原子薄的半导体中的库仑相互作用特别强,这些材料具有强大的biexcitons,并且在电磁谱的可见频率范围内运行。为了从光学设备中的生成的光中删除强泵激光器,或同时激发了非分类极性孔,希望具有两个光谱分离的泵激光器的双向泵构型。在本文中,我们从理论上研究了在双分型泵浦原子薄的半导体微腔中的自发性四波混合和正交缝隙。我们探索了两种不同的构型,分别支持从极性子分别散射到结合的biexcitons。我们发现这些配置会导致产生强烈的单模和两模式正交式光线。
Nonlinear optical effects such as four-wave mixing and generation of squeezed light are ubiquitous in optical devices and light sources. For new devices operating at low optical power, the resonant nonlinearity arising from the two-photon sensitive bound biexciton in a semiconductor microcavity is an interesting prospective platform. Due to the particularly strong Coulomb interaction in atomically thin semiconductors, these materials have strongly bound biexcitons and operate in the visible frequency range of the electromagnetic spectrum. To remove the strong pump laser from the generated light in optical devices or to simultaneously excite non-degenerate polaritons, a bichromatic-pump configuration with two spectrally separated pump lasers is desirable. In this paper, we theoretically investigate spontanous four-wave mixing and quadrature-squeezing in a bichromatically pumped atomically thin semiconductor microcavity. We explore two different configurations that support degenerate and non-degenerate scattering from polaritons into bound biexcitons, respectively. We find that these configurations lead to the generation strongly single- and two-mode quadrature-squeezed light.