3D Hydrodynamical Simulations of Helium-ignited Double-degenerate White Dwarf Mergers

被引:15
|
作者
Roy, Niranjan C. [1 ,2 ]
Tiwari, Vishal [1 ,3 ]
Bobrick, Alexey [4 ,5 ]
Kosakowski, Daniel [1 ]
Fisher, Robert [1 ]
Perets, Hagai B. [4 ]
Kashyap, Rahul [6 ,7 ,8 ]
Loren-Aguilar, Pablo [9 ]
Garcia-Berro, Enrique [10 ]
机构
[1] Univ Massachusetts Dartmouth, Dept Phys, 285 Old Westport Rd, N Dartmouth, MA 02740 USA
[2] Univ Connecticut, Dept Phys, Storrs, CT 06269 USA
[3] Georgia Inst Technol, Sch Phys, Ctr Relativist Astrophys, Atlanta, GA 30332 USA
[4] Technion Israel Inst Technol, Dept Phys, IL-32000 Haifa, Israel
[5] Lund Observ, Dept Astron & Theoret Phys, Box 43, SE-22100 Lund, Sweden
[6] Penn State Univ, Inst Gravitat & Cosmos, University Pk, PA 16802 USA
[7] Penn State Univ, Dept Phys, University Pk, PA 16802 USA
[8] Penn State Univ, Dept Astron & Astrophys, University Pk, PA 16802 USA
[9] Univ Exeter, Sch Phys, Stocker Rd, Exeter EX4 4QL, Devon, England
[10] Univ Politecn Cataluna, Dept Fis Aplicada, Esteve Terrades 5, E-08860 Castelldefels, Spain
基金
美国国家科学基金会;
关键词
DETONATIONS; SUPERNOVAE; EXPLOSION; EVOLUTION; MODELS;
D O I
10.3847/2041-8213/ac75e7
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The origins of Type Ia supernovae (SNe Ia) are still debated. Some of the leading scenarios involve a double detonation in double white dwarf (WD) systems. In these scenarios, helium shell detonation occurs on top of a carbon-oxygen (CO) WD, which then drives the detonation of the CO core, producing an SN Ia. Extensive studies have been done on the possibility of a double helium detonation, following a dynamical helium mass-transfer phase onto a CO-WD. However, 3D self-consistent modeling of the double-WD system, the mass transfer, and the helium shell detonation have been little studied. Here we use 3D hydrodynamical simulations to explore this case in which a helium detonation occurs near the point of Roche lobe overflow of the donor WD and may lead to an SN Ia through the dynamically driven double-degenerate double-detonation (D6) mechanism. We find that the helium layer of the accreting primary WD does undergo a detonation, while the underlying CO core does not, leading to an extremely rapid and faint nova-like transient instead of a luminous SN Ia event. This failed core detonation suggests that D6 SNe Ia may be restricted to the most massive CO primary WDs. We highlight the nucleosynthesis of the long-lived radioisotope Ti-44 during explosive helium burning, which may serve as a hallmark both of successful as well as failed D6 events, which subsequently detonate as classical double-degenerate mergers.
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收藏
页数:7
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