论文标题
使用空腔激子 - 波利顿指导随机激光发射
Directing random lasing emission using cavity exciton-polaritons
论文作者
论文摘要
随机激光是一种有趣的现象,发生在具有光学增益的无序结构中。在这样的激光器中,光的散射为激光作用提供了必要的反馈。由于光散射,随机激光系统与常规激光器的方向发射相反,在所有方向上发出。虽然在某些情况下可能需要此属性,但大多数应用程序都需要控制排放方向性。此外,众所周知,腔激素激发孔子的激发本质上是定向的。空腔极化的每个波长(能量),这是激子状态和空腔模式的叠加,对应于定义明确的传播方向。我们在本文中证明,将2D随机激光器与空腔极化共振允许控制随机激光的发射方向。这会导致定向随机激光,其相对于微腔轴的发射角可以通过改变腔体失沟以大范围的角度调节。在这项工作中,实验达到的排放角度为15.8 $^\ circ $和22.4 $^\ circ $。
Random lasing is an intriguing phenomenon occurring in disordered structures with optical gain. In such lasers, the scattering of light provides the necessary feedback for lasing action. Because of the light scattering, the random lasing systems emit in all the directions in contrast with the directional emission of the conventional lasers. While this property can be desired in some cases, the control of the emission directionality remains required for most of the applications. Besides, it is well known that the excitation of cavity exciton-polaritons is intrinsically directional. Each wavelength (energy) of the cavity polariton, which is a superposition of an excitonic state and a cavity mode, corresponds to a well-defined propagation direction. We demonstrate in this article that coupling the emission of a 2D random laser with a cavity polaritonic resonance permits to control the direction of emission of the random laser. This results in a directional random lasing whose emission angle with respect to the microcavity axis can be tuned in a large range of angles by varying the cavity detuning. The emission angles reached experimentally in this work are 15.8$^\circ$ and 22.4$^\circ$.