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Cladding pumped Yb-doped HOM power amplifier with high gain

机译:高增益覆层泵浦掺Yb的HOM功率放大器

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Higher-order mode (HOM) fibers have been engineered to allow propagation of linearly polarized symmetric modes LP_(0,N) in a robust way. Compared with the fundamental mode LP(0.1). HOMs exhibits an effective area that can be larger by over two order magnitude, and thus propagating light in these modes could greatly suppress the effect of nonlinear effects. HOM fibers could also be doped with rare earth ions in order to amplify light propagating in these modes, which offers the enormous potential for generating high-intensity pulses. Excitation of HOM gain fiber using cladding pumping with multimode pump source is attractive for ytterbium based amplifiers, because of the availability of low-cost multimode pump diodes in the 975nm wavelength range. One problem associated with cladding pumping which leads to excitation of the large doped core (over 100 μm diameter) is that it could result in a large amount of amplified-spontaneous-emission (ASE) noise, particularly when the input signal is weak. Optimization of amplifier design is critical in order to suppress ASE and achieve high gain and pump-to-signal conversion efficiency. We conducted numerical modeling of a cladding pumped HOM-amplifier, which revealed that this problem could be mitigated by using a relatively long gain-fiber that allowed reabsorption of the forward propagating ASE resulting in a further amplification of the signal. We demonstrate efficient amplification of a LP_(0.10) mode with an effective area 3140μm~2 in an Yb-doped HOM amplifier cladding pumped at 975nm. We have successfully obtained a 20.2dB gain for 0.95 W 1064 nm input seed signal to more than 105W.
机译:高阶模(HOM)光纤已被设计为允许以稳健的方式传播线性偏振对称模LP_(0,N)。与基本模式LP(0.1)比较。 HOM的有效面积可能会超过两个数量级,因此以这些模式传播光可以极大地抑制非线性效应的影响。 HOM光纤也可以掺杂稀土离子,以放大在这些模式下传播的光,这为产生高强度脉冲提供了巨大的潜力。由于采用了975nm波长范围内的低成本多模泵浦二极管,因此使用多模泵浦源的包层泵浦激励HOM增益光纤对于基于amplifier的放大器很有吸引力。与包层泵浦有关的一个问题是导致大的掺杂磁芯(直径超过100μm)的激发,这可能导致大量的放大自发(ASE)噪声,尤其是在输入信号较弱时。为了抑制ASE并实现高增益和泵浦信号转换效率,放大器设计的优化至关重要。我们对包层泵浦的HOM放大器进行了数值模拟,结果表明可以通过使用相对较长的增益光纤来缓解此问题,该光纤允许重新吸收正向传播的ASE,从而进一步放大信号。我们展示了在975nm泵浦的掺Yb的HOM放大器包层中有效面积3140μm〜2的LP_(0.10)模式的有效放大。我们成功地将0.95 W 1064 nm输入种子信号的20.2dB增益提高到105W以上。

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