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This article is cited in 3 scientific papers (total in 3 papers)
The simulation of SN2009ip bolometric light curves
Egor Urvachevab, Semyon Glazyrina a Dukhov Research Institute of Automatics (VNIIA)
b Keldysh Institute of Applied Mathematics of Russian Academy of Science
Abstract:
The direct method of measuring cosmological distances relies on observations of the
growth period of superluminous supernovae light curves. These supernovae can be explained by a strong shock wave propagation through the dense circumstellar matter. The
direct method assumes that the thin dense shell formed under such conditions is spherically symmetric. However, multidimensional instabilities can break this symmetry. This
article presents the simulation of SN2009ip, which has been successfully applied for the
direct method, using the radiation hydrodynamics code, FRONT. It was shown that a
simple model for SN2009ip correctly reproduces both the bolometric light curve as well
as the dynamics of the dense shell. Furthermore, this dense shell remains spherically
symmetric at least during the growth period of the light curve.
Keywords:
supernovae, light curves, radiation transfer.
Received: 30.09.2021 Revised: 30.09.2021 Accepted: 08.11.2021
Citation:
Egor Urvachev, Semyon Glazyrin, “The simulation of SN2009ip bolometric light curves”, Matem. Mod., 34:1 (2022), 16–32; Math. Models Comput. Simul., 14:4 (2022), 633–644
Linking options:
https://www.mathnet.ru/eng/mm4345 https://www.mathnet.ru/eng/mm/v34/i1/p16
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Abstract page: | 272 | Full-text PDF : | 59 | References: | 65 | First page: | 20 |
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