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Laser impulse coupling at 130 fs

机译:130 fs的激光脉冲耦合

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We measured the momentum coupling coefficient C-m and laser-generated ion drift velocity and temperature in the femtosecond (fs) region, over a laser intensity range from ablation threshold to about one hundred times threshold. Targets were several pure metals and three organic compounds. The organic compounds were exothermic polymers specifically developed for the micro-laser plasma thruster, and two of these used "tuned absorbers" rather than carbon particles for laser absorption. The metals ranged from Li to W in atomic weight. We measured time of flight (TOF) profiles for ions. Specific impulse reached record values for this type of measurement and ablation efficiency was near 100%. These measurements extend the laser pulsewidth three orders of magnitude downward in pulsewidth relative to previous reports. Over this range, we found C-m to be essentially constant. Ion velocity ranged from 60 to 180 km/s. (c) 2005 Elsevier B.V. All rights reserved.
机译:我们测量了飞秒(fs)区域内的动量耦合系数C-m以及激光产生的离子漂移速度和温度,其范围是从烧蚀阈值到大约一百倍阈值的激光强度。目标是几种纯金属和三种有机化合物。有机化合物是专门为微激光等离子推进器开发的放热聚合物,其中两种使用“调谐吸收器”而不是碳颗粒进行激光吸收。金属的原子量为Li至W。我们测量了离子的飞行时间(TOF)曲线。这种类型的测量的比冲达到了记录值,消融效率接近100%。相对于以前的报告,这些测量将激光脉冲宽度的脉冲宽度向下扩展了三个数量级。在此范围内,我们发现C-m基本恒定。离子速度范围为60至180 km / s。 (c)2005 Elsevier B.V.保留所有权利。

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