FUSE Spectroscopy of the Accreting Hot Components in Symbiotic Variables.

IF 5.1 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Astronomical Journal Pub Date : 2017-04-01 Epub Date: 2017-03-17 DOI:10.3847/1538-3881/aa62a9
Edward M Sion, Patrick Godon, Joanna Mikolajewska, Bassem Sabra, Craig Kolobow
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引用次数: 4

Abstract

We have conducted a spectroscopic analysis of the far ultraviolet archival spectra of four symbiotic variables, EG And, AE Ara, CQ Dra and RW Hya. RW Hya and EG And have never had a recorded outburst while CQ Dra and AE Ara have outburst histories. We analyze these systems while they are in quiescence in order to help reveal the physical properties of their hot components via comparisons of the observations with optically thick accretion disk models and NLTE model white dwarf photospheres. We have extended the wavelength coverage down to the Lyman Limit with FUSE spectra. We find that the hot component in RW Hya is a low mass white dwarf with a surface temperature of 160,000K. We re-examine whether or not the symbiotic system CQ Dra is a triple system with a red giant transferring matter to a hot component made up of a cataclysmic variable in which the white dwarf has a surface temperature as low as ∼20,000K. The very small size of the hot component contributing to the shortest wavelengths of the FUSE spectrum of CQ Dra agrees with an optically thick and geometrically thin (∼4% of the WD surface) hot (∼ 120, 000K) boundary layer. Our analysis of EG And reveals that its hot component is a hot, bare, low mass white dwarf with a surface temperature of 80-95,000K, with a surface gravity log(g) = 7.5. For AE Ara, we also find that a low gravity (log(g) ∼ 6) hot (T ∼ 130, 000K) WD accounts for the hot component.

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共生变量中吸积热分量的熔断光谱。
对4个共生变量EG And、AE Ara、CQ Dra和RW Hya的远紫外档案光谱进行了光谱分析。RW Hya和EG和从未有过爆发的记录,而CQ Dra和AE Ara有爆发的历史。我们在这些系统处于静止状态时进行分析,以便通过与光学厚吸积盘模型和NLTE模型白矮星光球的观测结果进行比较,帮助揭示其热成分的物理性质。我们用FUSE光谱将波长覆盖范围扩展到莱曼极限。我们发现RW Hya的热成分是一颗表面温度为16万k的低质量白矮星。我们重新研究了共生系统CQ Dra是否是一个三重系统,其中红巨星将物质转移到由灾难性变量组成的热组分,其中白矮星的表面温度低至~ 20,000K。热组分的非常小的尺寸对CQ Dra的FUSE光谱的最短波长做出了贡献,这与光学厚度和几何厚度(约为WD表面的4%)热(约120,000 k)边界层相一致。我们对EG和的分析表明,它的热成分是一颗热的、裸露的、低质量的白矮星,表面温度为80-95,000K,表面重力对数(g) = 7.5。对于AE Ara,我们还发现低重力(log(g) ~ 6)热(T ~ 13000k) WD是热成分的原因。
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来源期刊
Astronomical Journal
Astronomical Journal 地学天文-天文与天体物理
CiteScore
8.40
自引率
24.50%
发文量
501
审稿时长
2-4 weeks
期刊介绍: The Astronomical Journal publishes original astronomical research, with an emphasis on significant scientific results derived from observations. Publications in AJ include descriptions of data capture, surveys, analysis techniques, astronomical interpretation, instrumentation, and software and computing.
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