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Stimulated-Brillouin-scattering-suppressed high-power single-frequency polarization-maintaining Raman fiber amplifier with longitudinally varied strain for laser guide star

机译:受激布里渊散射抑制的高功率单频保偏拉曼光纤放大器,其纵向变化的应变适用于激光制导星

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摘要

An up to 44 W, 1 MHz linewidth, 1178 nm CW laser is obtained by Raman amplification of a distributed feedback diode laser in a variably strained polarization-maintaining fiber with a record-high optical efficiency of 52%, pumped by a linearly polarized 1120 nm fiber laser. A polarization extinction ratio of 30 dB is achieved due to the all-polarization-maintaining configuration and the polarization dependence of Raman gain. The strain distribution is designed according to the signal power evolution along the fiber. A 20 times reduction in the effective stimulated Brillouin scattering coefficient is achieved. A 24.3 W 589 nm laser is generated by an external resonant doubling cavity with an optical efficiency of 68.5%. The laser is locked to 589.1591 nm for a laser guide star.
机译:通过在线性应变1120泵浦的可变应变偏振保持光纤中以52%的创纪录高光效率通过分布式反馈二极管激光器的拉曼放大获得高达44 W,1 MHz线宽,1178 nm CW激光器纳米光纤激光器。由于保持全极化配置和拉曼增益的极化相关性,因此实现了30 dB的极化消光比。根据沿光纤的信号功率演变来设计应变分布。有效受激布里渊散射系数降低了20倍。 24.3 W 589 nm激光器由外部谐振倍频腔产生,其光学效率为68.5%。激光被锁定在589.1591 nm处以形成激光导星。

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