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Eta Carinae: the Dissipating Occulter is an Extended Structure

ASTROPHYSICAL JOURNAL(2023)

NASA | Malmo Univ | Space Telescope Sci Inst | Univ Pittsburgh | Univ Sao Paulo | San Jose State Univ | Univ Montreal | CALTECH | Catholic Univ Amer | Embry Riddle Aeronaut Univ | Univ Birmingham | Max Planck Inst Radio Astron

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Abstract
Previous Hubble Space Telescope (HST)/Space Telescope Imaging Spectrograph (STIS) longslit observations of Eta Carinae ( η Car) identified numerous absorption features in both the stellar spectrum, and in the adjacent nebular spectra, along our line of sight (LOS). The absorption features became temporarily stronger when the ionizing far-ultraviolet radiation field was reduced by the periastron passage of the secondary star. Subsequently, dissipation of a dusty structure in our LOS has led to a long-term increase in the apparent brightness of η Car, an increase in the ionizing ultraviolet (UV) radiation, and the disappearance of absorption from multiple velocity-separated shells extending across the foreground Homunculus lobe. We use HST/STIS spectro-images, coupled with published infrared and radio observations, to locate this intervening dusty structure. The velocity and spatial information indicate the occulter is ≈1000 au in front of η Car. The Homunculus is a transient structure composed of dusty, partially ionized ejecta that eventually will disappear due to the relentless rain of ionizing radiation and wind from the current binary system along with dissipation and mixing with the interstellar medium. This evolving complex continues to provide an astrophysical laboratory that changes on human timescales.
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Young Stellar Objects
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要点】:本研究利用HST/STIS光谱图片、红外和无线电观测结果,确定了Eta Carinae前方约1000天文单位处的尘埃遮挡物,解释了尘埃结构消散导致Eta Carinae亮度增加、电离辐射增强以及吸收线消失的现象。

方法】:使用HST/STIS光谱图片、红外和无线电观测结果,结合速度和空间信息,定位了Eta Carinae前方约1000天文单位的尘埃遮挡物。

实验】:通过观测到的吸收特征以及光谱和星云谱中的吸收特征的临时加强,研究发现Ionizing FUV辐射场减弱时,Eta Carinae的亮度和电离的UV辐射增加,且前景Homunculus叶片跨越多个速度分离的壳层的吸收特征消失。这是由于前景尘埃结构消散导致的现象。