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January 1, 1974Journal of Geophysical Research Atmospheres27 citations

On the distribution of He+in the plasmasphere from observations of resonantly scattered He II 304-Å radiation

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FPFrancesco ParesceCBC. Stuart BowyerSKShailendra Kumar

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Abstract

The intensity of the He II 304-A radiation in the night sky was measured from a sounding rocket launched from White Sands Missile Range on June 9, 1972. The data obtained on this flight are compared with predictions of theoretical models of the He(+) altitude distribution within the plasmasphere. The observations are not consistent with an isothermal equilibrium model of the helium ion in the plasmasphere, confirming earlier results. The data are best fit by a diffussive equilibrium model of exospheric He(+) having a plasma temperature gradient of 0.5 K per km and a number density at 1600 km of 200,000 He(+) ions per cu cm. In this model the ion densities are calculated without allowance for thermal diffusion. A similar model that allows for thermal diffusion and that has a He(+) number density at 1600 km of 1500 per cu cm and a temperature gradient of 1.2 K per km yields a less satisfactory fit to the observations but is more consistent with in situ satellite observations.

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Cite This Study

Paresce et al. (1974) studied this question.

synapsesocial.com/papers/6a7daa291a9d4ca5f9ac7eb6https://doi.org/10.1029/ja079i001p00174
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