Ye Ming-Yong, Shen Mei-Xia, Lin Xiu-Min
Fujian Provincial Key Laboratory of Quantum Manipulation and New Energy Materials, College of Physics and Energy, Fujian Normal University, Fuzhou 350007, China.
Sci Rep. 2016 Jan 22;6:19597. doi: 10.1038/srep19597.
Highly sensitive sensing is one of the most important applications of whispering-gallery-mode (WGM) microresonators, which is usually accomplished through a tunable continuous-wave laser sweeping over a whispering-gallery mode with the help of a fiber taper in a relative slow speed. It is known that if a tunable continuous-wave laser sweeps over a high quality whispering-gallery mode in a fast speed, a ringing phenomenon will be observed. The ringing phenomenon in WGM microresonators is mainly used to measure the Q factors and mode-coupling strengths. Here we experimentally demonstrate that the WGM sensing can be achieved based on the ringing phenomenon. This kind of sensing is accomplished in a much shorter time and is immune to the noise caused by the laser wavelength drift.
高灵敏度传感是回音壁模式(WGM)微谐振器最重要的应用之一,通常是通过可调谐连续波激光器借助光纤锥以相对较慢的速度扫过回音壁模式来实现的。众所周知,如果可调谐连续波激光器快速扫过高品质回音壁模式,将会观察到一种振铃现象。WGM微谐振器中的振铃现象主要用于测量品质因数和模式耦合强度。在此我们通过实验证明基于振铃现象可以实现WGM传感。这种传感在更短的时间内完成,并且不受激光波长漂移所引起的噪声影响。