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在兆巴压力下通过准等熵压缩产生的强非理想氘等离子体中的相变。

Phase transition in a strongly nonideal deuterium plasma generated by quasi-isentropical compression at megabar pressures.

作者信息

Fortov V E, Ilkaev R I, Arinin V A, Burtzev V V, Golubev V A, Iosilevskiy I L, Khrustalev V V, Mikhailov A L, Mochalov M A, Ternovoi V Ya, Zhernokletov M V

机构信息

Institute for High Energy Densities RAS, Moscow, Izhorskaya, 13/16, 125412, Russia.

出版信息

Phys Rev Lett. 2007 Nov 2;99(18):185001. doi: 10.1103/PhysRevLett.99.185001. Epub 2007 Oct 29.

Abstract

High-explosive driven generators of cylindrical and plane shock waves in D2 and H2 were used for the generation of warm and dense strongly nonideal matter with an intense interparticle interaction and Fermi statistics. Highly resolved flash x-ray diagnostics were used to measure the adiabatic plasma compressibility. The thermodynamic measurements demonstrated the 20% increase of density at megabar pressure, just in the density range, where the electrical measurements indicated a sharp--5 orders of magnitude--increase of electrical conductivity due to pressure ionization in strongly coupled plasmas.

摘要

利用高爆驱动的圆柱形和平面冲击波发生器在D2和H2中产生具有强烈粒子间相互作用和费米统计的温暖致密强非理想物质。使用高分辨率闪光X射线诊断技术测量绝热等离子体的压缩性。热力学测量表明,在兆巴压力下密度增加了20%,恰好在该密度范围内,电学测量表明由于强耦合等离子体中的压力电离,电导率急剧增加了5个数量级。

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