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Ultrafast collisional ion heating by electrostatic shocks

机译:静电冲击超快碰撞离子加热

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摘要

High-intensity lasers can be used to generate shockwaves, which have found applications in nuclear fusion, proton imaging, cancer therapies and materials science. Collisionless electrostatic shocks are one type of shockwave widely studied for applications involving ion acceleration. Here we show a novel mechanism for collisionless electrostatic shocks to heat small amounts of solid density matter to temperatures of ∼keV in tens of femtoseconds. Unusually, electrons play no direct role in the heating and it is the ions that determine the heating rate. Ions are heated due to an interplay between the electric field of the shock, the local density increase during the passage of the shock and collisions between different species of ion. In simulations, these factors combine to produce rapid, localized heating of the lighter ion species. Although the heated volume is modest, this would be one of the fastest heating mechanisms discovered if demonstrated in the laboratory.
机译:高强度激光可用于产生冲击波,这些冲击波已应用于核聚变,质子成像,癌症治疗和材料科学中。无碰撞静电冲击是为涉及离子加速的应用而广泛研究的一种冲击波。在这里,我们展示了一种新型的无碰撞静电冲击机制,可以在数十飞秒内将少量固体密度物质加热到keV的温度。通常,电子在加热中没有直接作用,而离子决定加热速率。由于电击电场之间的相互作用,电击通过期间局部密度增加以及不同种类的离子之间发生碰撞,离子被加热。在模拟中,这些因素结合在一起,对较轻的离子物种产生了快速的局部加热。尽管加热量不大,但如果在实验室中进行演示,这将是发现的最快的加热机制之一。

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