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Aerosol formation and hydrogen co-deposition by colliding ablation plasma plumes of lithium and lead

机译:锂和铅的消融等离子体羽碰撞形成气溶胶和氢共沉积

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In a high-repetition inertial fusion reactor, along with pellet implosions, the interior of target chamber is to be exposed to high-energy, short pulses of X-ray, unburned DT and He ash particles and pellet debris. As a result, wall materials will be subjected to ablation, ejecting particles in the plasma state to collide with each other in the center of volume. The interaction dynamics of ablation plasmas of lithium and lead, candidate first wall materials, has been investigated in the deposited energy density range from 3 to 10J/cm~2/pulse at a repetition rate of 10Hz, each 6ns long. The plasma density and electron temperature of colliding ablation plumes have been found to vary from the order of 10~8-10~(13) 1/cm~3 and from 0.7 to 1.5 eV, respectively. The formation of aerosol in the form of droplet has been observed with diameters between 100 nm and 10 μm. Also, hydrogen co-deposition has been found to occur particularly for colliding plumes of lithium, resulting in the H/Li atomic ratio from 0.15 to 0.27 in the hydrogen partial pressure range from 10 to 50 Pa.
机译:在一个高重复性的惯性聚变反应堆中,连同颗粒爆炸,靶室的内部将暴露于高能,短脉冲的X射线,未燃烧的DT和He灰烬颗粒以及颗粒碎片。结果,壁材料将受到烧蚀,以等离子体状态喷射颗粒以在体积中心相互碰撞。在沉积能量密度范围为3至10J / cm〜2 /脉冲的情况下,以10Hz的重复频率(每6ns长)研究了锂和铅作为候选第一壁材料的烧蚀等离子体的相互作用动力学。已发现碰撞消融羽流的等离子体密度和电子温度分别为10〜8-10〜(13)1 / cm〜3的量级和0.7至1.5 eV的量级。已经观察到直径为100nm至10μm的液滴形式的气溶胶的形成。而且,已经发现特别是对于碰撞的锂羽流会发生氢共沉积,在氢分压为10至50 Pa的情况下,H / Li原子比为0.15至0.27。

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