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The pursuit of heavy elements in the HgMn-type star Chi Lupi: Observations with the GHRS in the COSTAR ERA

机译:追求Hgmn型明星Chi Lupi中的重元素:在COsTaR时代观察GHRs

摘要

Observations of the ultra-sharp-lined HgMn star chi Lupi made with the Goddard High Resolution Spectrograph after the Hubble Space Telescope First Servicing Mission display the effect of COSTAR corrective optics upon the spectral resolution of several observing modes. The resolution is restored to levels expected in the absence of the telescope spherical aberration for all observations made through the GHRS Large Science Aperture (LSA). The Small Science Aperture (SSA) spectra are nearly identical in resolution to the pre-COSTAR values while benefiting from higher throughput. The line spread function for the LSA relative to the SSA shows little wavelength dependence and reflects a Gaussian profile approximately 20%-30% broader than for SSA spectra. Absorption features containing components of As II and Bi II represent upper limit enhancements of 2.9 and 2.1 dex for As II and Bi II, respectively, relative to meteoritic abundance determinations.
机译:哈勃太空望远镜首次维修任务后,用戈达德高分辨率光谱仪对超清晰的HgMn星chi chi Lupi进行观测,显示了COSTAR校正光学对几种观测模式的光谱分辨率的影响。对于通过GHRS大科学孔径(LSA)进行的所有观测,分辨率都恢复到没有望远镜球差的情况下预期的水平。小型科学孔径(SSA)光谱的分辨率几乎与COSTAR之前的值相同,同时受益于更高的通量。 LSA相对于SSA的线扩展函数显示出很少的波长依赖性,并且反射的高斯分布比SSA光谱宽约20%-30%。相对于陨石丰度测定,包含As II和Bi II成分的吸收特征分别代表As II和Bi II的上限增加2.9和2.1 dex。

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