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基于VSe2宽带可饱和吸收体的2.8 μm Er:YAP被动调Q激光器

蔡俊豪 李明达 裴浩 邢廷伦

发光学报2026,Vol.47Issue(6):1052-1059,8.
发光学报2026,Vol.47Issue(6):1052-1059,8.DOI:10.37188/CJL.20250293

基于VSe2宽带可饱和吸收体的2.8 μm Er:YAP被动调Q激光器

2.8 μm Passively Q-switched Er:YAP Laser Based on VSe2 Broadband Saturable Absorber

蔡俊豪 1李明达 2裴浩 3邢廷伦3

作者信息

  • 1. 黄淮学院电子信息学院,河南驻马店 463000
  • 2. 河南大学迈阿密学院,河南开封 475004
  • 3. 河南大学物理与电子学院,河南开封 475004
  • 折叠

摘要

Abstract

The vanadium diselenide(VSe2)powder was synthesized via a hydrothermal method,and a reflective VSe2 saturable absorber mirror was fabricated using liquid-phase exfoliation combined with a spin-coating process.Nonlinear optical characterization was performed using the open-aperture Z-scan technique at 1.06 μm and 3 μm,yielding modulation depths of approximately 6.1%and 4.9%,respectively.The results demonstrate that the VSe2 thin film exhibits broadband saturable absorption properties.To investigate its applicability as a passive fast photonic switch,the VSe2 saturable absorber was integrated into an end-pumped Er:YAP laser system operating at 2.8 μm,achieving stable passive Q-switched laser output.A stable pulse train emerged when the pump power reached 3.3 W,with an average output power of approximately 0.1 W.At a pump power of 7.3 W,the average output power increased to around 0.56 W,corresponding to an optical-to-optical conversion efficiency of approximately 11.4%.Under this condition,the pulsed laser had a repetition rate of 199.9 kHz and a pulse width of 208.6 ns.These find-ings indicate that the broadband VSe2 saturable absorber serves as an effective photonic modulator in the 1 μm to 3 μm wavelength range for achieving stable passive Q-switched laser operation,while also laying the foundation for realizing passive mode-locking in the mid-infrared spectral region.

关键词

中红外/光子开关/宽带可饱和吸收体/被动调Q/Er:YAP

Key words

mid-infrared/optical switching devices/broadband saturable absorber/Q-switched/Er:YAP

分类

信息技术与安全科学

引用本文复制引用

蔡俊豪,李明达,裴浩,邢廷伦..基于VSe2宽带可饱和吸收体的2.8 μm Er:YAP被动调Q激光器[J].发光学报,2026,47(6):1052-1059,8.

基金项目

河南省高等学校重点科研项目计划(25B140016) (25B140016)

河南省青年基金(202300410070)Supported by the Key Scientific Research Project Plan of Higher Education Institutions in Henan Province(25B140016) (202300410070)

the Natural Science Foundation of Henan Province(202300410070) (202300410070)

发光学报

1000-7032

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