Department of Applied Physics, Yale University, New Haven, CT 06520, USA.
Blackett Laboratory, Department of Physics, Imperial College London, London SW7 2AZ, UK.
Science. 2018 Sep 21;361(6408):1225-1231. doi: 10.1126/science.aas9437. Epub 2018 Aug 16.
Spatiotemporal instabilities are widespread phenomena resulting from complexity and nonlinearity. In broad-area edge-emitting semiconductor lasers, the nonlinear interactions of multiple spatial modes with the active medium can result in filamentation and spatiotemporal chaos. These instabilities degrade the laser performance and are extremely challenging to control. We demonstrate a powerful approach to suppress spatiotemporal instabilities using wave-chaotic or disordered cavities. The interference of many propagating waves with random phases in such cavities disrupts the formation of self-organized structures such as filaments, resulting in stable lasing dynamics. Our method provides a general and robust scheme to prevent the formation and growth of nonlinear instabilities for a large variety of high-power lasers.
时空不稳定性是由复杂性和非线性引起的广泛现象。在宽区域边缘发射半导体激光器中,多个空间模式与有源介质的非线性相互作用会导致细丝化和时空混沌。这些不稳定性会降低激光性能,并且极难控制。我们展示了一种使用波混沌或无序腔来抑制时空不稳定性的强大方法。在这种腔中,许多传播波与随机相位的干涉会破坏自组织结构(如细丝)的形成,从而导致稳定的激光动力学。我们的方法为各种高功率激光器提供了一种通用且稳健的方案,以防止非线性不稳定性的形成和增长。