arXiv · astro-ph/9906018
The Energy of a Plasma in the Classical Limit
Abstract
When λ_{T} << d_{T}, where λ_{T} is the de Broglie wavelength and d_{T}, the distance of closest approach of thermal electrons, a classical analysis of the energy of a plasma can be made. In all the classical analysis made until now, it was assumed that the frequency of the fluctuations ω<< T (k_{B}=\hbar=1). Using the fluctuation-dissipation theorem, we evaluate the energy of a plasma, allowing the frequency of the fluctuations to be arbitrary. We find that the energy density is appreciably larger than previously thought for many interesting plasmas, such as the plasma of the Universe before the recombination era.
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Merav Opher, Reuven Opher. 1999-06-01. The Energy of a Plasma in the Classical Limit. https://doi.org/10.1103/physrevlett.82.4835
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