Dimming the Lights: 2D Simulations of Deflagrations of Hybrid C/O/Ne White Dwarfs Using FLASH

Author:

Feldman CatherineORCID,Gutierrez NathanaelORCID,Eisenberg EllisORCID,Willcox Donald E.ORCID,Townsley Dean M.ORCID,Calder Alan C.ORCID

Abstract

Abstract The dimmest and most numerous outlier of the Type Ia supernova population, the Type Iax event, is increasingly being found in the results of observational campaigns. There is currently no single accepted model to describe these events. This 2D study explores the viability of modeling Type Iax events as a hybrid C/O/Ne white dwarf progenitor undergoing a deflagration using the multiphysics software FLASH. This hybrid was created using the stellar evolution code MESA, and its C-depleted core and mixed structure have demonstrated lower yields than traditional C/O progenitors in previous deflagration-to-detonation studies. To generate a sample, 30 “realizations” of this simulation were performed, the only difference being the shape of the initial match head used to start the deflagration. Consistent with earlier work, these realizations produce the familiar hot dense bound remnant surrounded by sparse ejecta. Our results indicate that the majority of the star remains unburned (∼70%) and bound (>90%). Our realizations produce total ejecta yields on the order of 10−2–10−1 M , ejected 56Ni yields on the order of 10−4–10−2 M , and ejecta kinetic energies on the order of 1048–1049 erg. Compared to yields inferred from recent observations of the dimmest Type Iax events—SN 2007qd, SN 2008ha, SN 2010ae, SN 2019gsc, SN 2019muj, SN 2020kyg, and SN 2021fcg—our simulation produces comparable 56Ni yields but too-small total yields and kinetic energies. Reignition of the remnant is also seen in some realizations.

Funder

U.S. Department of Energy

National Science Foundation

Simons Summer Research Program at Stony Brook University

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Benchmarking with Supernovae: A Performance Study of the FLASH Code;Practice and Experience in Advanced Research Computing 2024: Human Powered Computing;2024-07-17

2. Challenges Modeling the Low-Luminosity Type Iax Supernovae;Journal of Physics: Conference Series;2024-04-01

3. Ookami: An A64FX Computing Resource;Journal of Physics: Conference Series;2024-04-01

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