论文标题

多稳定激子鲜明效应

Multistable excitonic Stark effect

论文作者

Xiong, Ying, Rudner, Mark S., Song, Justin C. W.

论文摘要

光学鲜明的效果是在激子系统中相干光 - 互动的讲述签名,其中辐照光束调节激子过渡频率。在这里,我们表明,当激子放置在纳米光腔中时,激子的鲜明效应可能会变得高度非线性,表现出取决于辐照光的历史的多价值和滞后的较鲜明的变化。这种多稳定效应(MSE)是由腔模式占用与激子种群之间的反馈产生的,这是由腔体诱导的腔和激子共振的互惠介导的。令人惊讶的是,MSE即使表现为非常稀释的激子浓度,并且可以产生不连续的鲜明阶段MEV的跳跃。我们希望MSE可以在易于使用的过渡金属二进制金属二进制型激发型系统中实现,该系统位于平面光子腔中,以适度的泵强度。这种现象可以为即使在单个激子限制中持续存在的光线和物质耦合状态提供新的手段。

The optical Stark effect is a tell-tale signature of coherent light-matter interaction in excitonic systems, wherein an irradiating light beam tunes exciton transition frequencies. Here we show that, when excitons are placed in a nanophotonic cavity, the excitonic Stark effect can become highly nonlinear, exhibiting multi-valued and hysteretic Stark shifts that depend on the history of the irradiating light. This multistable Stark effect (MSE) arises from feedback between the cavity mode occupation and excitonic population, mediated by the Stark-induced mutual tuning of the cavity and excitonic resonances. Strikingly, the MSE manifests even for very dilute exciton concentrations and can yield discontinuous Stark shift jumps of order meV. We expect that the MSE can be realized in readily available transition metal dichalcogenide excitonic systems placed in planar photonic cavities, at modest pump intensities. This phenomenon can provide new means to engineer coupled states of light and matter that can persist even in the single exciton limit.

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