Zhai Tianrui, Han Liang, Ma Xiaojie, Wang Xiaolei
Faculty of Science, College of Physics and Optoelectronics, Beijing University of Technology, Beijing 100124, China.
Nanomaterials (Basel). 2021 Jun 9;11(6):1530. doi: 10.3390/nano11061530.
Among the efforts to improve the performances of microlasers, optimization of the gain properties and cavity parameters of these lasers has attracted significant attention recently. Distributed feedback lasers, as one of the most promising candidate technologies for electrically pumped microlasers, can be combined with dual-gratings. This combination provides additional freedom for the design of the laser cavity. Here, a holographic dual-grating is designed to improve the distributed feedback laser performance. The holographic dual-grating laser consists of a colloidal quantum dot film with two parallel gratings, comprising first-order (210 nm) and second-order (420 nm) gratings that can be fabricated easily using a combination of spin coating and interference lithography. The feedback and the output from the cavity are controlled using the first-order grating and the second-order grating, respectively. Through careful design and analysis of the dual-grating, a balance is achieved between the feedback and the cavity output such that the lasing threshold based on the dual-grating is nearly half the threshold of conventional distributed feedback lasers. Additionally, the holographic dual-grating laser shows a high level of stability because of the high stability of the colloidal quantum dots against photobleaching.
在提高微激光器性能的诸多努力中,优化这些激光器的增益特性和腔参数近来备受关注。分布式反馈激光器作为电泵浦微激光器最具前景的候选技术之一,可与双光栅相结合。这种结合为激光腔的设计提供了更多自由度。在此,设计了一种全息双光栅以提升分布式反馈激光器的性能。全息双光栅激光器由具有两个平行光栅的胶体量子点薄膜构成,包括一阶(210纳米)和二阶(420纳米)光栅,可通过旋涂和干涉光刻相结合的方法轻松制备。腔的反馈和输出分别由一阶光栅和二阶光栅控制。通过对双光栅的精心设计和分析,在反馈和腔输出之间实现了平衡,使得基于双光栅的激光阈值几乎是传统分布式反馈激光器阈值的一半。此外,由于胶体量子点对光漂白具有高度稳定性,全息双光栅激光器展现出高度的稳定性。