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Laser-Driven Plasma Loader for Shockless Compression and Acceleration of Samples in the Solid State

机译:激光驱动的等离子加载器,用于固态样品的无冲击压缩和加速

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摘要

A new method for shockless compression and acceleration of solid materials is presented. A plasma reservoir pressurized by a laser-driven shock unloads across a vacuum gap and piles up against an Al sample thus providing the drive. The rear surface velocity of the Al was measured with a line VISAR, and used to infer load histories. These peaked between ~0.14 and 0.5 Mbar with strain rates ~10~6 - 10~8 s~(-1). Detailed simulations suggest that apart from surface layers the samples can remain close to the room temperature isentrope. The experiments, analysis, and future prospects are discussed.
机译:提出了一种无冲击压缩和加速固体材料的新方法。受激光驱动的冲击加压的等离子体储器在真空间隙中卸载,并堆积在Al样品上,从而提供了驱动力。用VISAR线测量Al的后表面速度,并用于推断载荷历史。它们的峰值在〜0.14和0.5 Mbar之间,应变速率为〜10〜6-10〜8 s〜(-1)。详细的模拟表明,除了表面层外,样品还可以保持接近室温等熵。讨论了实验,分析和未来前景。

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