Freezing and melting of 3D complex plasma structures under microgravity conditions driven by neutral gas pressure manipulation

Freezing and melting of large three-dimensional complex plasmas under microgravity conditions is investigated. The neutral gas pressure is used as a control parameter to trigger the phase changes: Complex plasma freezes (melts) by decreasing (increasing) the pressure. The evolution of complex plasma...

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Veröffentlicht in:Physical review letters 2011-05, Vol.106 (20), p.205001-205001, Article 205001
Hauptverfasser: Khrapak, S A, Klumov, B A, Huber, P, Molotkov, V I, Lipaev, A M, Naumkin, V N, Thomas, H M, Ivlev, A V, Morfill, G E, Petrov, O F, Fortov, V E, Malentschenko, Yu, Volkov, S
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container_end_page 205001
container_issue 20
container_start_page 205001
container_title Physical review letters
container_volume 106
creator Khrapak, S A
Klumov, B A
Huber, P
Molotkov, V I
Lipaev, A M
Naumkin, V N
Thomas, H M
Ivlev, A V
Morfill, G E
Petrov, O F
Fortov, V E
Malentschenko, Yu
Volkov, S
description Freezing and melting of large three-dimensional complex plasmas under microgravity conditions is investigated. The neutral gas pressure is used as a control parameter to trigger the phase changes: Complex plasma freezes (melts) by decreasing (increasing) the pressure. The evolution of complex plasma structural properties upon pressure variation is studied. Theoretical estimates allow us to identify the main factors responsible for the observed behavior.
doi_str_mv 10.1103/PhysRevLett.106.205001
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source American Physical Society Journals
subjects 70 PLASMA PHYSICS AND FUSION TECHNOLOGY
CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS
FREEZING
MELTING
PHASE TRANSFORMATIONS
PLASMA
PRESSURE DEPENDENCE
THREE-DIMENSIONAL CALCULATIONS
title Freezing and melting of 3D complex plasma structures under microgravity conditions driven by neutral gas pressure manipulation
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