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Micropropulsion using a Nd:YAG microchip laser

机译:使用Nd:YAG微芯片激光器的微推进

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Small, lightweight, low power solid state and semiconductor lasers are enabling the development of a new class of thruster systems for micro- and nanosatellites. These devices generate thrust by laser ablation of a solid propellant using on-board lasers and permit small satellites to perform maneuvers such as orbit maintenance, precision pointing, and formation flying. In this work we present a concept for micropropulsion called the microchip laser thruster (MLT) that is based on laser ablation by a passively Q-switched Nd:YAG microchip laser. The microchip laser enables on-board ablation by sub-ns, high peak power, high repetition rate Gaussian pulses. A propellant feed concept is proposed that consists of a cylindrically shaped solid propellant and a single drive motor. Based on measurements of single pulse laser ablation in aluminum, copper and indium targets, we find that aluminum provides the best overall thrust and specific impulse (I_(sp)). Specifically, for a MLT system employing a 10 μJ/pulse, 10 kHz, 1064 nm microchip laser and Al propellant, we report the following system parameters: thrust range = 0.5 nN ― 5 μN, I_(sp) = 4900 s, system mass = 455 g, and maximum required power = 6.5 W. Atomic force and scanning electron microscope images of craters formed by single and multi-pulse ablation are shown to provide insight into effective propellant feed mechanism designs.
机译:小型,轻便,低功率的固态激光器和半导体激光器正在为微卫星和纳米卫星开发新型推进器系统。这些设备通过使用机载激光器对固体推进剂进行激光烧蚀来产生推力,并允许小型卫星执行操纵,例如轨道维护,精确指向和编队飞行。在这项工作中,我们提出了一种称为微芯片激光推进器(MLT)的微推进概念,该概念基于无源调Q开关Nd:YAG微芯片激光器的激光烧蚀。微芯片激光器可实现亚ns级,高峰值功率,高重复率高斯脉冲的板上烧蚀。提出了一种推进剂进料方案,该方案由圆柱形固体推进剂和单个驱动马达组成。基于对铝,铜和铟靶材的单脉冲激光烧蚀的测量,我们发现铝提供了最佳的总推力和比冲(I_(sp))。具体来说,对于采用10μJ/脉冲,10 kHz,1064 nm微芯片激光器和Al推进剂的MLT系统,我们报告以下系统参数:推力范围= 0.5 nN〜5μN,I_(sp)= 4900 s,系统质量= 455克,最大所需功率= 6.5瓦。显示了单脉冲和多脉冲烧蚀形成的弹坑的原子力和扫描电子显微镜图像,可以深入了解有效的推进剂进料机构设计。

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