Wang Kangni, Gu Tiancheng, Bykov Dmitry A, Zhang Xin, Qian Linyong
Opt Lett. 2023 Aug 1;48(15):4121-4124. doi: 10.1364/OL.499803.
Nanolasers based on quasi-bound states in the continuum (quasi-BIC) have attracted much attention owing to their unique optical properties providing strong light-matter interaction. Although various quasi-BIC lasers have been designed, so far, few efforts have been devoted to their tunability in wavelength. Here we propose an approach to employ quasi-BIC and guided mode in a slanted resonant waveguide grating. The proposed structure supports a specially designed eigenmode localized both in the grating and in the 4-dimethylamino-N-methyl-4-stilbazolium tosylate (DAST) layer, which allows it to obtain lasing emission as well as the ability to tune the wavelength. Numerical simulation results show that the threshold is approximately 7.75 μJ/cm with the tuning range being 28 nm. In addition, we show that the distribution of the lasing intensity between the transmission and reflection directions can be controlled by changing the parameters of the structure. This work shows good potential of combining quasi-BIC with guided mode to design tunable nanolaser.
基于连续统中的准束缚态(quasi-BIC)的纳米激光器因其独特的光学特性提供了强光与物质相互作用而备受关注。尽管已经设计了各种准BIC激光器,但到目前为止,很少有人致力于其波长可调性。在这里,我们提出了一种在倾斜谐振波导光栅中采用准BIC和导模的方法。所提出的结构支持一种特别设计的本征模,该本征模同时局域在光栅和对甲苯磺酸4-二甲氨基-N-甲基-4-苯乙烯基吡啶鎓(DAST)层中,这使其能够获得激光发射以及调谐波长的能力。数值模拟结果表明,阈值约为7.75 μJ/cm,调谐范围为28 nm。此外,我们表明,通过改变结构参数,可以控制透射和反射方向之间的激光强度分布。这项工作显示了将准BIC与导模相结合来设计可调谐纳米激光器的良好潜力。