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首页> 外文期刊>Journal of optics >High spectral energy density supercontinuum generation in fused silica by interfering two femtosecond laser beams
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High spectral energy density supercontinuum generation in fused silica by interfering two femtosecond laser beams

机译:通过干扰两个飞秒激光束来熔融二氧化硅中的高光谱能量密度超连续。

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摘要

The filaments formed by interference of femtosecond laser beams are distributed over the cross section of the laser beams, which could allow the incident laser pulse to have a relatively high energy and to generate high power supercontinuum (SC) in fused silica. In this paper, two-beam interference induced filamentation and SC in fused silica are experimentally studied. The spectrum of the SC is shown to be sensitive to cross angle and time delay between the two laser pulses. In our experimental conditions, the spectral energy density of the SC emission can reach the order of mu J nm(-1) from 726 to 859 nm and 0.1 mu J nm(-1) from 500 to 700 nm. The interference method provides an alternative and flexible approach to obtain the intense SC generation in condensed optical media.
机译:通过飞秒激光束的干涉形成的长丝在激光束的横截面上分布,这可能允许入射的激光脉冲具有相对高的能量并在熔融二氧化硅中产生高功率超级素(SC)。 在本文中,实验研究了双光束干扰诱导的熔融二氧化硅中的丝状细丝和SC。 SC的光谱显示在两个激光脉冲之间的交叉角度和时间延迟敏感。 在我们的实验条件下,SC发射的光谱能量密度可以从726到859nm和0.1μm(-1)从500到700nm达到mu j nm(-1)的顺序。 干扰方法提供了一种替代和灵活的方法来获得冷凝光学介质中的强度SC。

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