On the Geometry of the High‐Velocity Ejecta of the Peculiar Type Ia Supernova 2000cx
R. C. Thomas, David Branch, E. Baron, K. Nomoto, Weidong Li, A. V. Filippenko
Abstract
Open-access reader
R. C. Thomas, David Branch, E. Baron, K. Nomoto, Weidong Li, A. V. Filippenko
Abstract
Open-access reader
High-velocity features in Type Ia supernova spectra provide a way to probe the outer layers of these explosions. The maximum-light spectra of the unique Type Ia supernova 2000cx exhibit interesting Ca II features with high-velocity components. The infrared triplet absorption is quadruply notched, while the H and K absorption is wide and flat. Stimulated by a three-dimensional interpretation of similar Ca II features in another Type Ia supernova (SN 2001el; Kasen et al.), we present alternative spherically symmetric and three-dimensional ejecta models to fit the high-velocity ( v > 16,000 km s -1 ) Ca II features of SN 2000cx. We also present simple estimates of the high-velocity ejecta mass for a few trial compositions and discuss their implications for explosion modeling.
OpenAlex reports 43 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
High-velocity features in Type Ia supernova spectra provide a way to probe the outer layers of these explosions. The maximum-light spectra of the unique Type Ia supernova 2000cx exhibit interesting Ca II features with high-velocity components. The infrared triplet absorption is quadruply notched, while the H and K absorption is wide and flat. Stimulated by a three-dimensional interpretation of similar Ca II features in another Type Ia supernova (SN 2001el; Kasen et al.), we present alternative spherically symmetric and three-dimensional ejecta models to fit the high-velocity ( v > 16,000 km s -1 ) Ca II features of SN 2000cx. We also present simple estimates of the high-velocity ejecta mass for a few trial compositions and discuss their implications for explosion modeling.
Key concepts: Ejecta, Supernova, Physics, Astrophysics, Spectral line, Type (biology), Absorption (acoustics), Astronomy