The inside-out planetary nebula around a born-again star

被引:0
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作者
Martín A. Guerrero
Xuan Fang
Marcelo M. Miller Bertolami
Gerardo Ramos-Larios
Helge Todt
Alexandre Alarie
Laurence Sabin
Luis F. Miranda
Christophe Morisset
Carolina Kehrig
Saúl A. Zavala
机构
[1] IAA-CSIC,Instituto de Astrofísica de Andalucía
[2] The University of Hong Kong,Laboratory for Space Research & Department of Physics, Faculty of Science
[3] UNLP-CONICET,Instituto de Astrofísica de La Plata
[4] UNLP,Facultad de Ciencias Astronómicas y Geofísicas
[5] Universidad de Guadalajara,Instituto de Astronomía y Meteorología, Departamento de Física CUCEI
[6] University of Potsdam,Institute of Physics and Astronomy
[7] Universidad Nacional Autónoma de México,Instituto de Astronomía
[8] Departamento de Ciencias Básicas,Tecnológico Nacional de México/I.T. Ensenada
来源
Nature Astronomy | 2018年 / 2卷
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摘要
Planetary nebulae are ionized clouds of gas formed by the hydrogen-rich envelopes of low- and intermediate-mass stars ejected at late evolutionary stages. The strong UV flux from their central stars causes a highly stratified ionization structure, with species of higher ionization potential closer to the star. Here, we report on the exceptional case of HuBi 1, a double-shell planetary nebula whose inner shell presents emission from low-ionization species close to the star and emission from high-ionization species farther away. Spectral analysis demonstrates that the inner shell of HuBi 1 is excited by shocks, whereas its outer shell is recombining. The anomalous excitation of these shells can be traced to its low-temperature [WC10] central star whose optical brightness has declined continuously by 10 magnitudes in a period of 46 years. Evolutionary models reveal that this star is the descendant of a low-mass star (≃1.1 M⊙) that has experienced a ‘born-again’ event1 whose ejecta shock-excite the inner shell. HuBi 1 represents the missing link in the formation of metal-rich central stars of planetary nebulae from low-mass progenitors, offering unique insight regarding the future evolution of the born-again Sakurai’s object2. Coming from a solar-mass progenitor, HuBi 1 represents a potential end-state for our Sun.
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页码:784 / 789
页数:5
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