Meng Bingheng, Zhang Xuanyu, Kang Yubin, Yu Xuanchi, Wang Puning, Wang Shan, Tang Jilong, Hao Qun, Wei Zhipeng, Chen Rui
State Key Laboratory of High Power Semiconductor Laser, School of Physics, Changchun University of Science and Technology, 7089 Wei-Xing Road, Changchun 130022, P. R. China.
Department of Electrical and Electronic Engineering, Southern University of Science and Technology, Shenzhen, Guangdong 518055, P. R. China.
Nanoscale. 2024 Sep 26;16(37):17488-17494. doi: 10.1039/d4nr02734e.
Controlling the random lasing action from disordered media is important to obtain customizable lasers with unprecedented properties. In this paper, systematic investigations of random scattering based on GaAs/AlGaAs axial heterostructure nanowire (NW) arrays are presented. By manipulating the diameter and density of GaAs/AlGaAs axial heterostructure NWs during growth, different types of random lasers (Anderson localized and delocalized random lasers) have been successfully realized. The threshold, factor, and spatial coherence of these two types of lasers are experimentally discussed and analyzed. Finally, a proof-of-concept demonstration of speckle-free imaging based on the NW lasers has been conducted. This research enables the tunability of random lasers with exceptional performance and lays the foundation for achieving random lasing control.
控制来自无序介质的随机激光作用对于获得具有前所未有的特性的可定制激光器至关重要。本文展示了基于GaAs/AlGaAs轴向异质结构纳米线(NW)阵列的随机散射的系统研究。通过在生长过程中操纵GaAs/AlGaAs轴向异质结构纳米线的直径和密度,成功实现了不同类型的随机激光器(安德森局域化和非局域化随机激光器)。对这两种类型激光器的阈值、因子和空间相干性进行了实验讨论和分析。最后,基于纳米线激光器进行了无散斑成像的概念验证演示。这项研究实现了具有卓越性能的随机激光器的可调谐性,并为实现随机激光控制奠定了基础。