光学传感用窃窃廊谐振器

R. Madugani, S. Kasumie, Yong Yang, J. Ward, F. Lei, Síle Nic Chormaic
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引用次数: 0

摘要

近年来,窃窃私语通道模式器件的功能已经扩展到从光子学到传感应用的许多研究领域。在这里,我们将讨论使用由超薄光纤制成的超高q因子微球和由预锥形玻璃毛细管制成的微泡的环境传感应用,如压力,流量和温度。我们将讨论设备制造和使用这种系统可以追求的不同类型的传感。最后,我们将介绍使用腔起振光谱来执行色散瞬态传感的概念,其中对环境的扰动导致频率模式移位,以及耗散瞬态传感,这可以导致模式的展宽,在低语廊模式谐振器中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Whispering gallery resonators for optical sensing
In recent years, whispering gallery mode devices have extended their functionality across a number of research fields from photonics to sensing applications. Here, we will discuss environmental sensing applications, such as pressure, flow, and temperature using ultrahigh Q-factor microspheres fabricated from ultrathin optical fiber and microbubbles fabricated from pretapered glass capillary. We will discuss device fabrication and the different types of sensing that can be pursued using such systems. Finally, we will introduce the concept of using cavity ring-up spectroscopy to perform dispersive transient sensing, whereby a perturbation to the environment leads to a frequency mode shift, and dissipative transient sensing, which can lead to broadening of the mode, in a whispering gallery mode resonator.
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