首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Plasma-induced spectral broadening of high-energy ultrashort laser pulses in a helium-filled multiple-pass cell
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Plasma-induced spectral broadening of high-energy ultrashort laser pulses in a helium-filled multiple-pass cell

机译:等离子体充氦多通池中高能超短激光脉冲的光谱展宽

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We investigated the possibility of plasma-induced spectral broadening of high-energy ultrashort laser pulses in a helium-filled multipass cell (MPC) through a series of full numerical simulations of the extended nonlinear Schrodinger equation. It was found that the gas pressure must be set low so that the propagation dynamics can be controlled only by plasma defocusing. Simulations using 100 mJ, 40 fs laser pulses in the MPC, which is 6 m long and has a mirror of 3.1 m radius at each end, showed that if the gas pressure is set within the range of 40-130 Pa, then the relevant spectral broadening can be obtained after five passes, yielding compressed pulses of a 4.7-6.4 fs width. The ratio of the energy of the compressed pulse to the output pulse is found to be within 58-88%. (c) 2006 Optical Society of America.
机译:我们通过一系列扩展的非线性Schrodinger方程的完整数值模拟,研究了充氦多通电池(MPC)中等离子体诱导的高能超短激光脉冲光谱展宽的可能性。发现必须将气压设置得较低,以便仅通过等离子体散焦可以控制传播动力学。在MPC中使用100 mJ,40 fs的激光脉冲进行仿真,该脉冲长6 m,两端各有一个半径为3.1 m的反射镜,表明如果将气压设置在40-130 Pa的范围内,可以在五次通过之后获得光谱加宽,产生4.7-6.4 fs宽度的压缩脉冲。发现压缩脉冲与输出脉冲的能量之比在58-88%之内。 (c)2006年美国眼镜学会。

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