Tian Zhen-Nan, Yu Feng, Yu Yan-Hao, Xu Jun-Jie, Chen Qi-Dai, Sun Hong-Bo
Opt Lett. 2017 Apr 15;42(8):1572-1575. doi: 10.1364/OL.42.001572.
In this Letter, we report a suspended whispering gallery mode microdisk with a hole pierced through its surface. The novel disk is made up of Rhodamine B-doped resin, which is fabricated by femtosecond laser direct writing technology. The pierced microcavity achieves highly directional emission of single-mode lasing with a far field divergence angle of about 10 deg, and its high Q factor exceeds 2.6×10. The excellent properties are confirmed by numerical simulation based on the finite-difference time-domain method. The effect of the pierced hole on the microcavity performance is discussed in detail. The method is easy to implement and has a guiding significance for improving the characteristics of an existing microcavity by simple modification.
在本信函中,我们报道了一种表面有穿孔的悬浮回音壁模式微盘。这种新型微盘由罗丹明B掺杂树脂制成,通过飞秒激光直写技术制造。穿孔微腔实现了单模激光的高定向发射,远场发散角约为10度,其高品质因数超过2.6×10。基于时域有限差分法的数值模拟证实了这些优异性能。详细讨论了穿孔对微腔性能的影响。该方法易于实现,对通过简单修改改善现有微腔的特性具有指导意义。