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Wavelength-switchable and stable-ring-cavity, erbium-doped fiber laser based on Mach-Zehnder interferometer and tunable filter

机译:基于Mach-Zehnder干涉仪和可调滤波器的波长可切换和稳定环腔,掺铒光纤激光器

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摘要

This paper proposes and tests a ring cavity-based, erbium-doped fiber laser that incorporates a Mach-Zehnder interferometer and tunable filter. A four-m-long erbium-doped fiber was selected as the gain medium. The all-fiber Mach-Zehnder interferometer was composed of two 2 x 2 optical couplers, and the tunable filter was used as wavelength reflector. A lasing threshold of 103 mW was used in the experiment, and the tunable laser with stable single and dual wavelengths was implemented by adjusting the tunable filter. The channel spacing was 0.6 nm within the range 1539.4-1561.6 nm, where the power difference between the lines was less than 0.4 dB. The side-mode suppression ratio was higher than 36 dB and the 3 dB linewidth was 0.02 nm. When a single-wavelength laser was implemented at 1557.4 nm, the power fluctuations were lower than 0.34 dB within 20 min of scan time. When lasers at wavelengths of 1558.6 nm and 1559.2 nm were simultaneously applied, the power shifts were lower than 0.29 dB and 0.43 dB, respectively, at room temperature.
机译:本文提出并测试了一种基于环形腔的掺铒光纤激光器,其包括Mach-Zehnder干涉仪和可调滤波器。选择四维百年掺杂纤维作为增益介质。全光纤Mach-Zehnder干涉仪由两个2×2光学耦合器组成,可调谐过滤器用作波长反射器。在实验中使用103mW的激光阈值,通过调节可调滤波器来实现具有稳定单个和双波长的可调激光。通道间距为0.6nm,范围内为1539.4-1561.6 nm,其中线之间的功率差小于0.4 dB。侧面抑制比高于36dB,3dB线宽为0.02nm。当在1557.4nm处实现单波长激光器时,在扫描时间的20分钟内,功率波动低于0.34 dB。当同时施加波长为1558.6nm和1559.2nm的激光,在室温下,电源移位分别低于0.29dB和0.43 dB。

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