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首页> 外文期刊>Journal of Applied Physics >Laser impulse coupling measurements at 400 fs and 80 ps using the LULI facility at 1057 nm wavelength
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Laser impulse coupling measurements at 400 fs and 80 ps using the LULI facility at 1057 nm wavelength

机译:使用LULI设备在1057 nm波长下以400 fs和80 ps进行激光脉冲耦合测量

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At the École Polytechnique « LULI » facility, we have measured the impulse coupling coefficient C_m (target momentum per joule of incident laser light) with several target materials in vacuum, at 1057 nm and 400 fs and 80 ps pulse duration. A total of 64 laser shots were completed in a two-week experimental campaign, divided between the two pulse durations and among the materials. Our main purpose was to resolve wide discrepancies among reported values for C_m in the 100 ps region, where many applications exist. A secondary purpose was to compare C_m at 400 fs and 80 ps pulse duration. The 80 ps pulse was obtained by partial compression. Materials were Al, Ta, W, Au, and POM (polyoxymethylene, trade name Delrin). One application of these results is to pulsed laser ablation propulsion in space, including space debris re-entry, where narrow ranges in C_m and specific impulse I_(sp) spell the difference between dramatic and uneconomical performance. We had difficulty measuring mass loss from single shots. Imparted momentum in single laser shots was determined using pendulum deflection and photonic Doppler velocimetry. C_m was smaller at the 400 fs pulse duration than at 80 ps. To our surprise, C_m for Al at 80 ps was at most 30 N/MW with 30 kJ/m~2 incident fluence. On the other extreme, polyoxymethylene (POM, trade name Delrin) demonstrated 770 N/MW under these conditions. Together, these results offer the possibility of designing a C_m value suited to an application, by mixing the materials appropriately.
机译:在ÉcolePolytechnique«LULI»设施中,我们在真空中,在1057 nm,400 fs和80 ps的脉冲持续时间下,测量了几种目标材料的脉冲耦合系数C_m(每焦耳入射激光的目标动量)。在为期两周的实验活动中,总共完成了64次激光发射,分为两个脉冲持续时间和材料之间。我们的主要目的是解决100 ps区域中存在许多应用的C_m的报告值之间的巨大差异。第二个目的是比较400 fs和80 ps脉冲持续时间下的C_m。通过部分压缩获得80 ps的脉冲。材料为Al,Ta,W,Au和POM(聚甲醛,商品名Delrin)。这些结果的一种应用是对空间中的脉冲激光烧蚀推进,包括空间碎片再进入,其中C_m的窄范围和比冲I_(sp)构成了戏剧性和不经济性之间的差异。我们很难测量单发的质量损失。使用摆偏和光子多普勒测速仪确定了单次激光发射中受干扰的动量。在400 fs脉冲持续时间内,C_m小于80 ps。令我们惊讶的是,铝在80 ps时的C_m最高为30 N / MW,入射通量为30 kJ / m〜2。另一方面,在这些条件下,聚甲醛(POM,商品名Delrin)显示出770 N / MW。总之,这些结果提供了通过适当混合材料来设计适合应用的C_m值的可能性。

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