SPH simulations of the induced gravitational collapse

Q4 Physics and Astronomy Astronomical and Astrophysical Transactions Pub Date : 2022-12-15 DOI:10.17184/eac.7529
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Abstract

In the induced gravitational collapse (IGC) paradigm, a carbon–oxygen (CO) star collapses and explodes in a supernova (SN) in the presence of a binary companion, a neutron star (NS). The material ejected in the explosion is gravitationally attracted by the NS, triggering a hypercritical accretion process onto it. For compact systems, the accretion rate could be high enough for the NS to reach its critical mass, collapse in a black hole (BH) and emit an energetic (energy release $\gtrsim 10^{52}$ erg) gamma-ray burst (GRB). With the aim to identify the separatrix of systems in which a BH is formed and characterize the observational signatures of the above process, we have performed three-dimensional (3D) smoothed-particle-hydrodynamics (SPH) numerical simulations of the SN expansion in the presence of the NS companion and the evolution of the NS during the accretion process. We here summarize the results of the above simulations for a wide range of the initial conditions of the parameter space.
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诱导引力坍缩的SPH模拟
在诱导引力坍缩(IGC)范式中,一颗碳氧(CO)恒星在双星伴星中子星(NS)存在的情况下坍缩并爆炸为超新星(SN)。爆炸中喷射出的物质受到NS的引力吸引,引发了对NS的超临界吸积过程。对于紧凑型系统,吸积率可能高到足以使NS达到临界质量,坍缩成黑洞(BH)并发射高能(能量释放$\gtrsim 10^{52}$ erg)伽马射线暴(GRB)。为了确定黑洞形成系统的分离矩阵并表征上述过程的观测特征,我们对黑洞伴星存在下的SN膨胀和吸积过程中SN的演化进行了三维光滑粒子流体动力学(SPH)数值模拟。我们在这里总结了上述模拟的结果,在很大范围的初始条件的参数空间。
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来源期刊
Astronomical and Astrophysical Transactions
Astronomical and Astrophysical Transactions Physics and Astronomy-Instrumentation
CiteScore
0.40
自引率
0.00%
发文量
16
期刊介绍: Astronomical and Astrophysical Transactions (AApTr) journal is being published jointly by the Euro-Asian Astronomical Society and Cambridge Scientific Publishers, The journal provides a forum for the rapid publication of material from all modern and classical fields of astronomy and astrophysics, as well as material concerned with astronomical instrumentation and related fundamental sciences. It includes both theoretical and experimental original research papers, short communications, review papers and conference reports.
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