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首页> 外文期刊>Applied optics >Tunable microwave generation based on a dual-wavelength single-longitudinal-mode fiber laser using a phase-shifted grating on a triangular cantilever
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Tunable microwave generation based on a dual-wavelength single-longitudinal-mode fiber laser using a phase-shifted grating on a triangular cantilever

机译:基于双波长单纵模光纤激光器的可调谐微波生成,在三角形悬臂上使用相移光栅

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摘要

Frequency tunable microwave signal generation, based on a dual-wavelength single-longitudinal-mode (SLM) erbium-doped fiber (EDF) laser, incorporating a phase-shifted fiber Bragg grating (PS-FBG) with two pi-phase shifts, is demonstrated. In the proposed configuration, the PS-FBG with two ultranarrow transmission bands is embedded in a triangular cantilever to serve as a wavelength spacing tunable filter with a fixed center wavelength by applying various strains on the cantilever. A section of unpumped EDF is employed as a saturable absorber to ensure SLM operation in each of the two lasing lines. By beating the two wavelengths at a photodiode, a tunable microwave signal ranging from 8.835 to 24.360 GHz is successfully achieved.
机译:基于双波长单纵模(SLM)掺fiber光纤(EDF)激光器的频率可调微波信号生成,结合了具有两个pi相移的相移光纤布拉格光栅(PS-FBG)。演示。在建议的配置中,具有两个超窄传输带的PS-FBG嵌入三角形悬臂中,通过在悬臂上施加各种应变来用作具有固定中心波长的波长间隔可调滤波器。将一段未泵送的EDF用作可饱和吸收器,以确保两条激光线中的每条中的SLM操作。通过在光电二极管上拍打两个波长,可以成功实现8.835至24.360 GHz范围内的可调微波信号。

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