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Spectra of the ??keV X-Ray Diffuse Background from the Diffuse X-Ray Spectrometer Experiment

机译:漫射X射线光谱仪实验获得的keV X射线漫射背景光谱

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The Diffuse X-ray Spectrometer (DXS) flew as an attached payload on the STS-54 mission of the space shuttle Endeavour in 1993 January and obtained spectra of the soft X-ray diffuse background in the 148-284 eV (84-44 ?) band using a Bragg-crystal spectrometer. The spectra show strong emission lines, indicating that the emission is primarily thermal. Since the observations were made at low Galactic latitude, this thermal emission must arise from a nearby hot component of the interstellar medium, most likely the Local Hot Bubble, a region within ~100 pc of the Sun characterized by an absence of dense neutral gas. The DXS spectrum of the hot interstellar medium is not consistent with either collisional equilibrium models or with nonequilibrium ionization models of the X-ray emission from astrophysical plasmas. Models of X-ray emission processes appear not yet adequate for detailed interpretation of these data. The DXS data are most nearly consistent with models of thermal emission from a plasma with a temperature of 106.1 K and depletions of refractory elements magnesium, silicon, and iron to levels ~30% of solar.
机译:漫射X射线光谱仪(DXS)作为附加的有效载荷在1993年1月执行Endeavor航天飞机的STS-54任务时飞行,并获得了148-284 eV的软X射线漫射背景的光谱(84-44? )波段使用布拉格晶体光谱仪。光谱显示出强发射线,表明发射主要是热辐射。由于观测是在低银河纬度上进行的,因此这种热辐射必须来自星际介质附近的热成分,最有可能是局部热泡,该区域距太阳约100 pc以内,其特征是不存在浓稠的中性气体。星际热介质的DXS光谱与天体等离子体X射线发射的碰撞平衡模型或非平衡电离模型都不一致。 X射线发射过程的模型似乎不足以详细解释这些数据。 DXS数据与温度为106.1 K且等离子体中的难熔元素镁,硅和铁耗竭至太阳能的约30%的等离子体热发射模型最接近。

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