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Measurement of the compressibility of a deuterium plasma at a pressure of 1800 GPa
Authors:M. A. Mochalov  R. I. Il’kaev  V. E. Fortov  A. L. Mikhailov  Yu. M. Makarov  V. A. Arinin  S. K. Grishechkin  A. O. Blikov  V. A. Ogorodnikov  A. V. Ryzhkov  V. K. Gryaznov
Affiliation:1. Russian Federal Nuclear Center VNIIEF, pr. Mira 37, Sarov, Nizhni Novgorod region, 607188, Russia
2. Joint Institute for High Temperatures, Russian Academy of Sciences, ul. Izhorskaya 13/19, Moscow, 125412, Russia
3. Institute of Problems of Chemical Physics, Russian Academy of Sciences, Chernogolovka, Moscow region, 142432, Russia
Abstract:The thermodynamic properties of a highly compressed deuterium plasma have been measured using an explosive spherical experimental chamber. The experiment has been performed with an X-ray diffraction complex consisting of three betatrons and a multichannel optoelectronic system of the detection of X-ray images of the process of the explosive spherical compression of deuterium. The density of the shock-compressed deuterium plasma ρ = (4.3 ± 0.7) g/cm3 at the pressure P = 1830 GPa has been detected at the initial pressure of gaseous deuterium P 0 = 267 atm and the temperature T 0 = 10.5°C. Under such conditions, the plasma is strongly nonideal (Γ ~ 450) with the degenerate (nλ e 3 ~ 280) electron component and with an electron density of about 2.8 × 1023 cm?3.
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