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A 3D Simulation of a Type II-P Supernova: from Core Bounce to Beyond Shock Breakout

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arxiv 2411.03434 v2 pith:PYRJCMSM submitted 2024-11-05 astro-ph.HE astro-ph.SR

classification astro-ph.HEastro-ph.SR
keywords breakoutshockcoreprogenitorsimulationbeyondccsndetailed
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

In order to better connect core-collapse supernovae (CCSN) theory with its observational signatures, we have developed a simulation pipeline from the onset of core collapse to beyond shock breakout. Using this framework, we present a three-dimensional simulation study following the evolution from five seconds to over five days of a 17-M$_{\odot}$ progenitor that explodes with $\sim$10$^{51}$ erg of energy and $\sim$0.1 M$_{\odot}$ of $^{56}$Ni ejecta. The early explosion is highly asymmetric, expanding most prominently along the southern hemisphere. This early asymmetry is preserved to shock breakout, $\sim$1 day later. Breakout itself evinces strong angle-dependence, with as much a day delay in shock breakout by direction. The nickel ejecta closely tails the forward shock, with velocities at breakout as high as $\sim$7000 km s$^{-1}$. A delayed reverse shock forming at the H/He interface on hour timescales leads to the formation of Rayleigh-Taylor instabilities, fast-moving nickel bullets, and almost complete mixing of the metal core into the hydrogen envelope. For the first time, we illustrate the angle-dependent emergent broadband and bolometric light curves from simulations evolved in three-dimensions in entirety, continuing through hydrodynamic shock breakout a CCSN model of a massive stellar progenitor evolved with detailed, late-time neutrino microphysics and transport. Our case study of a single progenitor suggests that 3D simulations initiated with detailed neutrino heating can begin to generically produce the cornucopia of suggested asymmetries and features in CCSNe observations, while establishing the methodology to study this problem in breadth.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Channels of Stellar-mass Black Hole Formation

    astro-ph.SR 2024-12 conditional novelty 7.0 of 10

    Stellar-mass black holes can form through at least four distinct channels in 3D core-collapse supernova simulations, including vigorous explosions, weak explosions with fallback, aborted explosions, and a rare silent channel.

  2. Potassium abundances in extremely metal poor stars: Implications for nucleosynthesis in the final stages of massive star evolution

    astro-ph.SR 2025-08 conditional novelty 6.0 of 10

    Potassium-to-iron and potassium-to-calcium ratios in seven extremely metal-poor stars show ~0.1 dex scatter, implying K production in massive stars or supernovae is decoupled from the processes driving Na/Mg variation.

  3. SEDONA-GesaRaT: an AI-Accelerated Radiative Transfer Program for 3-D Supernova Simulations

    astro-ph.HE 2025-07 conditional novelty 6.0 of 10

    A neural-network surrogate for non-LTE atomic physics enables 3D supernova radiative transfer and spectropolarimetry at roughly 3000 core-hours.

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