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A spherical shell pellet injection system for repetitive laser engagement

机译:用于重复激光接合的球壳丸粒注入系统

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In laser-driven inertial fusion energy reactors, injected fuel pellets are continuously delivered into the reaction chamber and irradiated by laser beams injected at a frequency of tens of hertz. Thus far, a spherical shell pellet has been confirmed as the most conventional target design to achieve high-energy-density state thorough an implosion process that is required for fusion burn. To demonstrate repetitive fuel implosion with a 1 Hz joule-class laser system, a testbed of a shell injection system delivering a spherical shell (500 mu m diameter and 7 mu m thickness) was developed. The developed testbed demonstrated that (i) repetitive implosion (maximum frequency: 0.5 Hz) of shell injection was possible for more than ten shells at a shell speed of 191 mm s(-1), and (ii) the distribution of the injected shell after 18 cm free-fall was within a circular region, 6.4 mm in diameter. The estimated laser-hit-ratio to the pellet was on the order of 10%.
机译:在激光驱动的惯性聚变能反应堆中,被注入的燃料颗粒被连续输送到反应室中,并被以几十赫兹频率注入的激光束照射。迄今为止,已经证实球形壳丸是通过熔合燃烧所需的内爆过程实现高能量密度状态的最常规的靶设计。为了演示使用1 Hz焦耳级激光系统进行的重复燃料内爆,开发了提供球形壳体(直径500μm,厚度7μm)的壳体注入系统的试验台。发达的试验台表明(i)在191 mm s(-1)的壳速度下,十个以上的壳可能会重复注入壳(最大频率:0.5 Hz),并且(ii)注入壳的分布在18厘米处自由落体之后,处于直径6.4毫米的圆形区域内。估计的颗粒的激光命中率约为10%。

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