Diallo Souleymane, Lin Guoping, Chembo Yanne K
Opt Lett. 2015 Aug 15;40(16):3834-7. doi: 10.1364/OL.40.003834.
In this Letter, we show that giant thermo-optical oscillations can be triggered in millimeter (mm)-size whispering gallery mode (WGM) disk resonators when they are pumped by a resonant continuous-wave laser. Our resonator is an ultrahigh-Q barium fluoride cavity that features a positive thermo-optic coefficient and a negative thermo-elastic coefficient. We demonstrate for the first time, to our knowledge, that the complex interplay between these two thermic coefficients and the intrinsic Kerr nonlinearity yields very sharp slow-fast relaxation oscillations with a slow timescale that can be exceptionally large, typically of the order of 1 s. We use a time-domain model to gain understanding into this instability, and we find that both the experimental and theoretical results are in excellent agreement. The understanding of these thermal effects is an essential requirement for every WGM-related application and our study demonstrates that even in the case of mm-size resonators, such effects can still be accurately analyzed using nonlinear time-domain models.
在本信函中,我们表明,当毫米(mm)尺寸的回音壁模式(WGM)盘式谐振器由共振连续波激光泵浦时,可触发巨大的热光振荡。我们的谐振器是一个超高Q值的氟化钡腔,其具有正的热光系数和负的热弹性系数。据我们所知,我们首次证明,这两个热系数与固有克尔非线性之间的复杂相互作用会产生非常尖锐的慢-快弛豫振荡,其慢时间尺度可能非常大,通常约为1秒。我们使用时域模型来深入了解这种不稳定性,并且发现实验结果与理论结果非常吻合。对这些热效应的理解是每个与WGM相关应用的基本要求,并且我们的研究表明,即使对于毫米尺寸的谐振器,仍然可以使用非线性时域模型准确分析此类效应。