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- W2053708766 abstract "This paper describes an experimental determination of the electron thermal diffusivity ${D}_{T}$ in a room-temperature neon afterglow plasma. The measurements were made in the absence of a magnetic field and covered an electron density range from ${10}^{9}$-${10}^{12}$ ${mathrm{cm}}^{ensuremath{-}3}$. The principle of the experiment was to heat the electrons by a short microwave pulse, and then observe electron temperature transients at other locations within the plasma. The perturbations in the electron temperature were determined by taking advantage of the temperature sensitivity of the electro-acoustic Tonks-Dattner resonances. For electron-ion collision frequencies ${ensuremath{nu}}_{mathrm{ei}}$ much larger than the electron-neutral collision frequency ${ensuremath{nu}}_{mathrm{en}}$, the experimental data for ${D}_{T}$ are inversely proportional to the electron density and agree closely with the transport theory of Spitzer and Harm. In the limit of the weakly ionized plasma, i.e., ${ensuremath{nu}}_{mathrm{ei}}ensuremath{ll}{ensuremath{nu}}_{mathrm{en}}$, the electron thermal diffusivity is independent of electron density and agrees within 25% with Shkarofsky's theory." @default.
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- W2053708766 date "1967-05-05" @default.
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- W2053708766 title "Measurements of Electron Thermal Diffusivity in Afterglow Plasmas" @default.
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- W2053708766 doi "https://doi.org/10.1103/physrev.157.138" @default.
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