Brownian dynamic of laser cooling and crystallization of electron-ion plasma

Laser cooling and crystallization of electron-ion plasma is studied using the Brownian dynamics simulation technique and taking into consideration the interaction of ions with the electron subsystem. It has been shown that the nonlinear dependence of laser friction force on the velocity of ions has...

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Veröffentlicht in:Physical review. E, Statistical, nonlinear, and soft matter physics Statistical, nonlinear, and soft matter physics, 2009-11, Vol.80 (5 Pt 2), p.056404-056404, Article 056404
Hauptverfasser: Gavriliuk, A P, Isaev, I L, Karpov, S V, Krasnov, I V, Shaparev, N Ya
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container_issue 5 Pt 2
container_start_page 056404
container_title Physical review. E, Statistical, nonlinear, and soft matter physics
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creator Gavriliuk, A P
Isaev, I L
Karpov, S V
Krasnov, I V
Shaparev, N Ya
description Laser cooling and crystallization of electron-ion plasma is studied using the Brownian dynamics simulation technique and taking into consideration the interaction of ions with the electron subsystem. It has been shown that the nonlinear dependence of laser friction force on the velocity of ions has to be taken into account in order to simulate in an adequate manner the cooling dynamics and obtain a correct estimate for minimum temperatures. It has been found that times required for formation of an ordered ionic structure can be much longer than the typical plasma cooling time.
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title Brownian dynamic of laser cooling and crystallization of electron-ion plasma
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