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タイトルA High Speed, Radiation Hard X-Ray Imaging Spectroscometer for Planetary Investigations
本文(外部サイト)http://hdl.handle.net/2060/20150002563
著者(英)Morgenthaler, J.; Branduardi-Raymont, G.; Martindale, A.; Kimura, T.; Hong, J.; Grant, C.; Murray, S. S.; Elsner, R.; Elvis, M.; Campbell, B.; Pearson, J.; Smith, R.; Ezoe, Y.; Kravens, T.; Kenter, A. T.; Gladstone, R.; Kraft, R. P.; Steffl, A. J.; Howell, R.; Roediger, E.
著者所属(英)NASA Marshall Space Flight Center
発行日2014-11-04
言語eng
内容記述X-ray observations provide a unique window into fundamental processes in planetary physics, and one that is complementary to observations obtained at other wavelengths. We propose to develop an X-ray imaging spectrometer (0.1-10 keV band) that, on orbital planetary missions, would measure the elemental composition, density, and temperature of the hot plasma in gas giant magnetospheres, the interaction of the Solar wind with the upper atmospheres of terrestrial planets, and map the elemental composition of the surfaces of the Galilean moons and rocky or icy airless systems on spatial scales as small as a few meters. The X-ray emission from gas giants, terrestrial planets and moons with atmospheres, displays diverse characteristics that depend on the Solar wind's interaction with their upper atmospheres and/or magnetospheres. Our imaging spectrometer, as part of a dedicated mission to a gas giant, will be a paradigm changing technology. On a mission to the Jovian system, our baseline instrument would map the elemental composition of the rocky and icy surfaces of the Galilean moons via particle-induced X-ray fluorescence. This instrument would also measure the temperature, density and elemental abundance of the thermal plasma in the magnetosphere and in the Io plasma torus (IPT), explore the interaction of the Solar wind with the magnetosphere, and characterize the spectrum, flux, and temporal variability of X-ray emission from the polar auroras. We will constrain both the mode of energy transport and the effective transport coefficients in the IPT and throughout the Jovian magnetosphere by comparing temporal and spatial variations of the X-ray emitting plasma with those seen from the cooler but energetically dominant 5 eV plasma.
NASA分類Astronomy; Optics; Lunar and Planetary Science and Exploration
レポートNOM14-4066
権利Copyright, Distribution as joint owner in the copyright


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