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Impact of Cavity Geometry on Microlaser Dynamics.

作者信息

Kim Kyungduk, Bittner Stefan, Jin Yuhao, Zeng Yongquan, Wang Qi Jie, Cao Hui

机构信息

Department of Applied Physics, Yale University, New Haven, Connecticut 06520, USA.

Université de Lorraine, CentraleSupélec, LMOPS, 2 rue Edouard Belin, Metz 57070, France.

出版信息

Phys Rev Lett. 2023 Oct 13;131(15):153801. doi: 10.1103/PhysRevLett.131.153801.

Abstract

We experimentally investigate spatiotemporal lasing dynamics in semiconductor microcavities with various geometries, featuring integrable or chaotic ray dynamics. The classical ray dynamics directly impacts the lasing dynamics, which is primarily determined by the local directionality of long-lived ray trajectories. The directionality of optical propagation dictates the characteristic length scales of intensity variations, which play a pivotal role in nonlinear light-matter interactions. While wavelength-scale intensity variations tend to stabilize lasing dynamics, modulation on much longer scales causes spatial filamentation and irregular pulsation. Our results will pave the way to control the lasing dynamics by engineering the cavity geometry and ray dynamical properties.

摘要

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