Published February 1980 | Version v1
Journal article

The measurement of ion acoustic turbulence and reduced thermal conductivity caused by a large temperature gradient in a laser heated plasma

  • 1. Imperial Coll. of Science and Technology, London (UK). Blackett Lab.

Description

An extensive account is given of experiments in which an homogeneous preformed plasma of density 6 x 1016cm-3 was heated by 10.6 μm radiation focussed to 1011W cm-2. Ruby laser scattering gave space and time resolved measurements of the resultant density and temperature showing large temperature gradients up to lambdasub(e)differential vectoroperatorT/T = 0.5. Enhanced low frequency turbulence was observed. When compared with a one dimensional computer code, the observed temperature gradients imply that the heat flux was limited to 4 +- 2% of the free streaming limit but that the absorption was 1.1 +- 0.5 times the classical inverse bremsstrahlung absorption rate. The observed Tsub(e)/Tsub(i) and lambdasub(e)differential vector operatorT/T were sufficient to excite heat flux driven ion acoustic turbulence, which explains the observed low frequency turbulence. This turbulence level is shown to be large enough to account for the observed thermal conductivity. (author)

Additional details

Publishing Information

Journal Title
Plasma Phys.
Journal Volume
22
Journal Issue
2
Series
Plasma Phys.
Journal Page Range
81-111
ISSN
0032-1028