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首页> 外文期刊>Optics Letters >Microjoule-energy, 1 MHz repetition rate pulses from all-fiber-integrated nonlinear chirped-pulse amplifier
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Microjoule-energy, 1 MHz repetition rate pulses from all-fiber-integrated nonlinear chirped-pulse amplifier

机译:来自全光纤集成非线性chi脉冲放大器的微焦耳能量,1 MHz重复频率脉冲

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摘要

We demonstrate generation of pulses with up to 4   μ J energy at 1   MHz repetition rate through nonlinear chirped-pulse amplification in an entirely fiber-integrated amplifier, seeded by a fiber oscillator. The peak power and the estimated nonlinear phase shift of the amplified pulses are as much as 57   kW and 22 π , respectively. The shortest compressed pulse duration of 140   fs is obtained for 3.1   μ J of uncompressed amplifier output energy at 18 π of nonlinear phase shift. At 4   μ J of energy, the nonlinear phase shift is 22 π and compression leads to 170 - fs -long pulses. Numerical simulations are utilized to model the experiments and identify the limitations. Amplification is ultimately limited by the onset of Raman amplification of the longer edge of the spectrum with an uncompressible phase profile.
机译:我们演示了在光纤振荡器播种的完全光纤集成放大器中,通过非线性chi脉冲放大,以1 re MHz重复频率产生具有高达4 J J J能量的脉冲的情况。放大后的脉冲的峰值功率和估计的非线性相移分别高达57 kW和22π。在非线性相移为18π时,未压缩放大器输出能量为3.1 J时,获得的最短压缩脉冲持续时间为140 fs。在能量为4 J时,非线性相移为22π,压缩导致170-fs长的脉冲。利用数值模拟对实验建模并确定局限性。放大最终受到具有不可压缩的相位分布的光谱的较长边缘的拉曼放大的开始的限制。

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