Ma Jingwen, Zhou Taojie, Tang Mingchu, Li Haochuan, Zhang Zhan, Xi Xiang, Martin Mickael, Baron Thierry, Liu Huiyun, Zhang Zhaoyu, Chen Siming, Sun Xiankai
Department of Electronic Engineering, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong SAR, China.
School of Science and Engineering, The Chinese University of Hong Kong, Shenzhen, Guangdong, 518172, China.
Light Sci Appl. 2023 Oct 24;12(1):255. doi: 10.1038/s41377-023-01290-4.
Robust laser sources are a fundamental building block for contemporary information technologies. Originating from condensed-matter physics, the concept of topology has recently entered the realm of optics, offering fundamentally new design principles for lasers with enhanced robustness. In analogy to the well-known Majorana fermions in topological superconductors, Dirac-vortex states have recently been investigated in passive photonic systems and are now considered as a promising candidate for robust lasers. Here, we experimentally realize the topological Dirac-vortex microcavity lasers in InAs/InGaAs quantum-dot materials monolithically grown on a silicon substrate. We observe room-temperature continuous-wave linearly polarized vertical laser emission at a telecom wavelength. We confirm that the wavelength of the Dirac-vortex laser is topologically robust against variations in the cavity size, and its free spectral range defies the universal inverse scaling law with the cavity size. These lasers will play an important role in CMOS-compatible photonic and optoelectronic systems on a chip.
强大的激光源是当代信息技术的基本组成部分。拓扑学概念起源于凝聚态物理学,最近已进入光学领域,为具有更高鲁棒性的激光器提供了全新的设计原理。类似于拓扑超导体中著名的马约拉纳费米子,狄拉克涡旋态最近在无源光子系统中得到了研究,现在被认为是鲁棒激光器的一个有前途的候选者。在这里,我们通过实验在硅衬底上单片生长的InAs/InGaAs量子点材料中实现了拓扑狄拉克涡旋微腔激光器。我们观察到在电信波长下的室温连续波线性偏振垂直激光发射。我们证实,狄拉克涡旋激光器的波长在拓扑上对腔尺寸的变化具有鲁棒性,并且其自由光谱范围违背了与腔尺寸的通用反比缩放定律。这些激光器将在芯片上的CMOS兼容光子和光电子系统中发挥重要作用。