Zhao Chunhu, Guo Jia, Tao Jiahua, Chu Junhao, Chen Shaoqiang, Xing Guichuan
Hunan Provincial Key Laboratory of Carbon Neutrality and Intelligent Energy, School of Resource & Environment, Hunan University of Technology and Business, 410205, Changsha, China.
Engineering Research Center for Nanophotonics and Advanced Instrument, Ministry of Education, School of Physics and Electronic Science, East China Normal University, 200241, Shanghai, China.
Light Sci Appl. 2024 Jul 17;13(1):170. doi: 10.1038/s41377-024-01494-2.
Laser pulse multiplication from an optical gain medium has shown great potential in miniaturizing integrated optoelectronic devices. Perovskite multiple quantum wells (MQWs) structures have recently been recognized as an effective gain media capable of doubling laser pulses that do not rely on external optical equipment. Although the light amplifications enabled with pulse doubling are reported based on the perovskite MQWs thin films, the micro-nanolasers possessed a specific cavity for laser pulse multiplication and their corresponding intrinsic laser dynamics are still inadequate. Herein, a single-mode double-pulsed nanolaser from self-assembled perovskite MQWs nanowires is realized, exhibiting a pulse duration of 28 ps and pulse interval of 22 ps based on single femtosecond laser pulse excitation. It is established that the continuous energy building up within a certain timescale is essential for the multiple population inversion in the gain medium, which arises from the slowing carrier localization process owning to the stronger exciton-phonon coupling in the smaller-n QWs. Therefore, the double-pulsed lasing is achieved from one fast energy funnel process from the adjacent small-n QWs to gain active region and another slow process from the spatially separated ones. This report may shed new light on the intrinsic energy relaxation mechanism and boost the further development of perovskite multiple-pulse lasers.
来自光学增益介质的激光脉冲倍增在集成光电器件的小型化方面显示出巨大潜力。钙钛矿多量子阱(MQW)结构最近被认为是一种有效的增益介质,能够使激光脉冲加倍,且不依赖外部光学设备。尽管基于钙钛矿MQW薄膜报道了脉冲加倍实现的光放大,但微纳激光器具有用于激光脉冲倍增的特定腔,其相应的固有激光动力学仍不充分。在此,实现了一种来自自组装钙钛矿MQW纳米线的单模双脉冲纳米激光器,基于单飞秒激光脉冲激发,其脉冲持续时间为28 ps,脉冲间隔为22 ps。已确定在一定时间尺度内连续的能量积累对于增益介质中的多次粒子数反转至关重要,这是由于较小n值量子阱中更强的激子 - 声子耦合导致载流子局域化过程减慢所致。因此,双脉冲激光发射是通过一个从相邻小n值量子阱到增益有源区的快速能量漏斗过程以及另一个从空间分离的量子阱的缓慢过程实现的。本报告可能为内在能量弛豫机制提供新的见解,并推动钙钛矿多脉冲激光器的进一步发展。