High efficiency fiber-coupled acousto-optic modulator with low drive power based on Ge21Sb18S61 chalcogenide glass
Abstract
Acousto-optic modulators (AOMs) are widely utilized in laser Q-switching, optical communications, and spectral analysis. In this work, Ge21Sb18S61 (GeSbS) chalcogenide glass (ChG) was systematically studied as an AO medium. The GeSbS glass exhibits a low thermo-optic coefficient of 16.7 × 10−6 °C−1, a sound velocity of 2674 m/s, an acoustic attenuation of 4.06 dB/cm at 100 MHz, and a high AO figure of merit of 201.1 × 10−18 s3/g. We fabricated a fiber-coupled AOM based on GeSbS glass. It exhibited a high diffraction efficiency of 84.07% at 1.55 μm with an exceptionally low radio frequency drive power of 0.52 W, demonstrating an extinction ratio of 61 dB, an insertion loss of 2.1 dB, and a rise time of 41 ns that met or exceeded those of commercial AOMs. Furthermore, integration of the GeSbS AOM into an all-fiber erbium-doped ring laser enabled stable Q-switching pulsed laser operation with a minimum pulse width of 233 ns at 5 kHz. These results demonstrated the superior AO performance of GeSbS glass, expanding the possibilities for practical applications and the AOM implementation.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (7)
Changyou Li
Zhaoxiang Qiu
Laboratory of Infrared Materials and Devices, The Research Institute of Advanced Technologies, Ningbo University 1 , Ningbo 315211,
Shixun Dai
Yingying Wang
Department of Psychology and Behavioral Sciences, Zhejiang University
Changgui Lin
Laboratory of Infrared Materials and Devices, The Research Institute of Advanced Technologies, Ningbo University 1 , Ningbo 315211,
Zhongchao Wu
The 26th Research Institute of China Electronics Technology Corporation 3 , Chongqing 400000,
Lingling Jiang