Published May 2005 | Version v1
Journal article

Electron-temperature and energy-flow history in an imploding plasma

  • 1. Institut fuer Kernphysik, Technische Universitaet Darmstadt, 64289 Darmstadt (Germany)
  • 2. Faculty of Physics, Technion-Israeli Institute of Technology, Haifa (Israel)
  • 3. Faculty of Physics, Weizmann Institute of Science, Rehovot, 76100 (Israel)

Description

The time-dependent radial distribution of the electron temperature in a 0.6 μs, 220-kA gas-puff z-pinch plasma is studied using spatially-resolved observations of line emission from singly to fivefold ionized oxygen ions during the plasma implosion, up to 50 ns before maximum compression. The temperature obtained, together with the previously determined radial distributions of the electron density, plasma radial velocity, and magnetic field, allows for studying the history of the magnetic-field energy coupling to the plasma by comparing the energy deposition and dissipation rates in the plasma. It is found that at this phase of the implosion, ∼65% of the energy deposited in the plasma is imparted to the plasma radial flow, with the rest of the energy being converted into internal energy and radiation

Additional details

Identifiers

Publishing Information

Journal Title
Physical Review. E, Statistical Physics, Plasmas, Fluids, and Related Interdisciplinary Topics
Journal Volume
71
Journal Issue
5
Journal Page Range
p. 056402-056402.11
ISSN
1063-651X
CODEN
PLEEE8

INIS

Country of Publication
United States
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
37021488
Subject category
S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
Descriptors DEI
COMPRESSION; ELECTRON DENSITY; ELECTRON TEMPERATURE; IMPLOSIONS; MAGNETIC FIELDS; OXYGEN IONS; PLASMA; RADIAL VELOCITY; SPATIAL DISTRIBUTION; TIME DEPENDENCE
Descriptors DEC
CHARGED PARTICLES; DISTRIBUTION; IONS; VELOCITY

Optional Information

Notes
(c) 2005 The American Physical Society