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Broadband Generation by Multiple Four-Wave Mixing Process Due To ASE Q-Switching In High-Power Double-Clad Ytterbium-Doped Fiber Amplifier

机译:高功率双包层掺Fiber光纤放大器中的ASE Q开关导致多个四波混频工艺产生宽带

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Broadband output from 1060nm to 1700nm and cascaded four-wave mixing generated red light pulsing is observed in a fiber amplifier set up consisting of a 5.5m double clad, double D shaped Ytterbium doped fiber, a single clad passive fiber for excess pump absorption and a splitter, both with and without a CW seed. Self-pulsing occurs from ASE due to passive Q-switching by saturable absorption effect of the active fiber and also depends on splice loss. The pulses generate broadband output by multiple four-wave mixing process with maximum broadening efficiency near 1300nm which is the zero dispersion wavelength for silica fiber. Pulses traveling both in forward and backward direction have enough peak power and energy to damage splice points and fiber components. When seeded the self-pulsing and broadband generation is often suppressed but again generate at increased pump powers.
机译:在光纤放大器装置中观察到从1060nm到1700nm的宽带输出以及级联的四波混频产生的红光脉冲,该光纤放大器装置包括5.5m双包层,双D形掺Y光纤,单包层无源光纤(用于过量泵浦吸收)和一个光纤。分离器,带有和不带有CW种子。 ASE会由于有源光纤的饱和吸收效应而进行无源Q开关,从而使ASE产生自脉冲,并且还取决于熔接损耗。脉冲通过多次四波混频过程产生宽带输出,最大扩展效率接近1300nm,这是石英光纤的零色散波长。向前和向后传播的脉冲具有足够的峰值功率和能量,可以损坏熔接点和光纤组件。播种后,通常会抑制自脉冲和宽带的产生,但又会以增加的泵浦功率产生。

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