Zeng Qingji, Lafalce Evan, Lin Chun Hao, Smith Marcus J, Jung Jaehan, Yoon Young, Lin Zhiqun, Tsukruk Vladimir V, Vardeny Z Valy
Department of Physics & Astronomy , University of Utah , Salt Lake City , Utah 84112 , United States.
School of Materials Science and Engineering , Georgia Institute of Technology , Atlanta , Georgia , 30332 , United States.
Nano Lett. 2019 Sep 11;19(9):6049-6057. doi: 10.1021/acs.nanolett.9b01914. Epub 2019 Aug 7.
Whispering gallery mode resonators have been demonstrated to be a great way to achieve superior optical cavities with high quality factor and small mode volume. However, due to the high sensitivity of these modes to the properties of the resonator boundary, they are susceptible to parasitic splitting of clockwise and counterclockwise modes. In this work, we investigate the effect of implantation of an engineered notch into the boundary of a circular microdisk resonator fabricated from colloidal quantum dots, which are particularly sensitive to boundary defects. We observed a strong reduction of parasitic mode splitting with introduction of a large engineered notch, as well as enhanced directionality of laser emission. We further investigate the performance of these resonators in evanescently coupled pairs, where the modal interaction allows modulation of laser behavior through variation of the gain and loss induced by the optical pump. We show that two distinct cases of modal interaction can be achieved by adjusting the size of the engineered notch, providing a bridge between intra- and interdisk modal interactions for laser spectral control.
回音壁模式谐振器已被证明是实现具有高品质因数和小模式体积的优质光学腔的一种好方法。然而,由于这些模式对谐振器边界特性的高度敏感性,它们容易受到顺时针和逆时针模式的寄生分裂影响。在这项工作中,我们研究了在由胶体量子点制成的圆形微盘谐振器边界中植入工程化缺口的效果,胶体量子点对边界缺陷特别敏感。我们观察到,随着大型工程化缺口的引入,寄生模式分裂显著减少,同时激光发射的方向性增强。我们进一步研究了这些谐振器在倏逝耦合对中的性能,其中模态相互作用允许通过改变光泵浦引起的增益和损耗来调制激光行为。我们表明,通过调整工程化缺口的大小可以实现两种不同的模态相互作用情况,为激光光谱控制提供了盘内和盘间模态相互作用之间的桥梁。