All-optical Tuning of Microsphere Whispering Gallery Mode Resonance Wavelength to Lock to the DFB Laser Wavelength for Using in CH4 Detection

Author:

Wang Han,Weng Longhang,Yu Wenwei

Abstract

Abstract Methane is a flammable and explosive gas, which is the main component of mashgas and natural gas.Methane monitoring plays an important role in coal mine safety and natural gas.The high-Q whispering gallery mode (WGM) of optical microcavity has a long photon lifetime, which greatly prolongs the effective optical path between light and surroundings,and has the potential to be made into miniaturized and highly sensitive gas sensor device.In order to realize the high Q microcavity WGM enhancement light absorption methane gas sensor,the key technology is to lock the resonant frequency of the microsphere cavity to the DFB laser frequency.In order to ensure the intrinsic safety of the CH4 sensor, the resonance wavelength of the all-optically tuning microsphere cavity was studied, so that it was locked to the wavelength of the CH4 absorption peak of 1653.72nm. The resonant wavelength of the microsphere was tuned by injecting light along the fiber handle of the microsphere, and the refractive index of the microsphere was changed by absorbing light and converting heat with the coating of the sphere crown.

Publisher

IOP Publishing

Subject

Computer Science Applications,History,Education

Reference11 articles.

1. Whispering gallery mode optical microresonators: fundamentals and applications[J];Zou;Scientia Sinica (Physica, Mechanica & Astronomica),2012

2. Ultra low threshold Raman laser using a spherical dielectric microcavity[J];Spillane;Nature,2002

3. Fabrication of high-Q polydimethy-lsiloxane optical microspheres for thermal sensing[J];Dong;Applied Physics Let-ters,2009

4. 2μm laser generation and amplification based on dual Tm3+-doped high-Q silica microsphere using an ASE light source for pumping [J];Huang;Optics and Laser Technology,2022

5. Research on fabrication and sensing properties of fiber coupled whispering gallery mode microsphere resonator[J];Zhang;IEEE Sensor Journal,2020

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