The photospheres of the hottest fastest stars in the Galaxy
暂无分享,去创建一个
[1] K. Burdge,et al. A transiting brown dwarf in a 2 hour orbit , 2023, The Open Journal of Astrophysics.
[2] S. O. Kepler,et al. The bright blue side of the night sky: Spectroscopic survey of bright and hot (pre-) white dwarfs , 2023, Astronomy & Astrophysics.
[3] K. Werner,et al. Revealing the ionising star of evolved planetary nebulae , 2023, Astronomy & Astrophysics.
[4] M. Hole,et al. AREPO White Dwarf merger simulations resulting in edge-lit detonation and run-away hypervelocity companion , 2023, Monthly Notices of the Royal Astronomical Society.
[5] P. Brassard,et al. On the Spectral Evolution of Hot White Dwarf Stars. IV. The Diffusion and Mixing of Residual Hydrogen in Helium-rich White Dwarfs , 2023, The Astrophysical Journal.
[6] C. Jeffery,et al. Hot white dwarfs and pre-white dwarfs discovered with SALT , 2023, 2301.03550.
[7] W. E. Kerzendorf,et al. On the fate of the secondary white dwarf in double-degenerate double-detonation Type Ia supernovae , 2022, 2203.14990.
[8] N. Cox,et al. Updated Gaia-2MASS 3D maps of Galactic interstellar dust , 2022, Astronomy & Astrophysics.
[9] J. Hermes,et al. Masses of White Dwarf Binary Companions to Type Ia Supernovae Measured from Runaway Velocities , 2021, The Astrophysical Journal Letters.
[10] N. Zakamska,et al. The SN Ia runaway LP 398-9: Detection of circumstellar material and surface rotation , 2021, Monthly Notices of the Royal Astronomical Society.
[11] G. Fontaine,et al. On the Spectral Evolution of Hot White Dwarf Stars. I. A Detailed Model Atmosphere Analysis of Hot White Dwarfs from SDSS DR12 , 2020, The Astrophysical Journal.
[12] S. Bloemen,et al. A proto-helium white dwarf with a non-interacting neutron star or black hole companion -- Uncovering the true nature of a candidate hypervelocity B-star , 2020 .
[13] S. O. Kepler,et al. SDSS J124043.01+671034.68: the partially burned remnant of a low-mass white dwarf that underwent thermonuclear ignition? , 2020, Monthly Notices of the Royal Astronomical Society.
[14] E. Observatory,et al. Partly burnt runaway stellar remnants from peculiar thermonuclear supernovae , 2019, Monthly Notices of the Royal Astronomical Society.
[15] R. Foley,et al. The Long-term Evolution and Appearance of Type Iax Postgenitor Stars , 2018, The Astrophysical Journal.
[16] Chris L. Fryer,et al. Remnants and ejecta of thermonuclear electron-capture supernovae , 2018, Astronomy & Astrophysics.
[17] W. E. Kerzendorf,et al. Three Hypervelocity White Dwarfs in Gaia DR2: Evidence for Dynamically Driven Double-degenerate Double-detonation Type Ia Supernovae , 2018, The Astrophysical Journal.
[18] A. Irrgang,et al. Spectral energy distributions and colours of hot subluminous stars , 2017, 1712.06546.
[19] D. Kasen,et al. Sub-Chandrasekhar-mass White Dwarf Detonations Revisited , 2017, 1706.01898.
[20] P. Bergeron,et al. A SPECTROSCOPIC SEARCH FOR CHEMICALLY STRATIFIED WHITE DWARFS IN THE SLOAN DIGITAL SKY SURVEY , 2016 .
[21] T. Rauch,et al. Analysis of HST/COS spectra of the bare C-O stellar core H1504+65 and a high-velocity twin in the Galactic halo , 2015, 1509.08942.
[22] Oded Papish,et al. The response of a helium white dwarf to an exploding Type Ia supernova , 2014, 1410.1153.
[23] T. Rauch,et al. Weak metal lines in optical high-resolution Very Large Telescope and Keck spectra of “cool” PG 1159 stars , 2014 .
[24] Astrophysics,et al. On Helium-Dominated Stellar Evolution: The Mysterious Role of the O(He)-Type Stars , 2014, 1405.1589.
[25] Garching,et al. Full evolutionary models for PG 1159 stars. Implications for the helium-rich O(He) stars , 2006, astro-ph/0603846.
[26] F. Herwig,et al. The Elemental Abundances in Bare Planetary Nebula Central Stars and the Shell Burning in AGB Stars , 2005, astro-ph/0512320.
[27] T. Rauch,et al. Identification of neon in FUSE and VLT spectra of extremely hot hydrogen-deficient (pre-) white dwarfs , , 2004, astro-ph/0407356.
[28] L. Koesterke,et al. Comprehensive modelling of the planetary nebula LMC-SMP 61 and its [WC]-type central star , 2003, astro-ph/0310459.
[29] Eli Livne,et al. Successive detonations in accreting white dwarfs as an alternative mechanism for type I supernovae , 1990 .
[30] R. Webbink. Double white dwarfs as progenitors of R Coronae Borealis stars and type I supernovae , 1984 .
[31] R. Kurucz. Model atmospheres for G, F, A, B, and O stars , 1979 .
[32] H. V. Regemorter,et al. RATE OF COLLISIONAL EXCITATION IN STELLAR ATMOSPHERES , 1962 .
[33] OUP accepted manuscript , 2022, Monthly Notices of the Royal Astronomical Society: Letters.