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Related papers: Radiation-hydrodynamical modelling of underluminou…

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The progenitors of Type IIP supernovae (SNe) are known to be red supergiants, but their properties are not well determined. We employ hydrodynamical modelling to investigate the explosion characteristics of eight Type IIP supernovae, and…

High Energy Astrophysical Phenomena · Physics 2019-06-19 Wilson Ricks , Vikram V. Dwarkadas

The progenitors of low-luminosity Type II-Plateau supernovae (SNe II-P) are believed to be red supergiant (RSG) stars, but there is much disparity in the literature concerning their mass at core collapse and therefore on the main sequence.…

High Energy Astrophysical Phenomena · Physics 2017-12-06 Sergey M. Lisakov , Luc Dessart , D. John Hillier , Roni Waldman , Eli Livne

We present new data for five under-luminous type II-plateau supernovae (SNe IIP), namely SN 1999gn, SN 2002gd, SN 2003Z, SN 2004eg and SN 2006ov. This new sample of low-luminosity SNe IIP (LL SNe IIP) is analyzed together with similar…

The detailed study of supernovae (SNe) and their progenitors allows to better understand the evolution of massive stars and how these end their lives. Despite its importance, the range of physical parameters for the most common type of…

Solar and Stellar Astrophysics · Physics 2019-09-18 Laureano Martinez , Melina C. Bersten

Previous studies of type IIP supernovae have inferred that progenitor masses recovered from hydrodynamic models are higher than 15 Msun. To verify the progenitor mass of this supernova category, we attempt a parameter determination of the…

Solar and Stellar Astrophysics · Physics 2015-05-13 V. P. Utrobin , N. N. Chugai

All Type IIn supernovae (SNe IIn) show narrow hydrogen emission lines in their spectra. Apart from this common feature, they demonstrate very broad diversity in brightness, duration, and morphology of their light curves, which indicates…

High Energy Astrophysical Phenomena · Physics 2022-08-03 Chunhui Li , Viktoriya Morozova

The progenitor mass of type IIP supernova can be determined from either hydrodynamic modeling of the event or pre-explosion observations. To compare these approaches, we determine parameters of the sub-luminous supernova 2005cs and estimate…

Astrophysics · Physics 2009-11-13 V. P. Utrobin , N. N. Chugai

The diversity of Type II supernovae (SNe II) is thought to be driven mainly by differences in their progenitor's hydrogen-rich (H-rich) envelope mass, with SNe IIP having long plateaus ($\sim100$ days) and the most massive H-rich envelopes.…

The origin of low-luminosity Type IIP supernovae is unclear: they have been proposed to originate either from massive (about 25 Msun) or low-mass (about 9 Msun) stars. We wish to determine parameters of the low-luminosity Type IIP supernova…

Astrophysics · Physics 2009-11-13 V. P. Utrobin , N. N. Chugai , A. Pastorello

Linking supernovae to their progenitors is a powerful method for furthering our understanding of the physical origin of their observed differences, while at the same time testing stellar evolution theory. In this second study of a series of…

The explosion energy and the ejecta mass of a type IIP supernova make up the basis for the theory of explosion mechanism. So far, these parameters have only been determined for seven events. Type IIP supernova 2008in is another…

Solar and Stellar Astrophysics · Physics 2015-06-16 V. P. Utrobin , N. N. Chugai

Type IIn supernovae (SNe IIn) are hydrogen-rich explosions embedded in dense circumstellar medium (CSM), which gives rise to their characteristic narrow hydrogen emission lines. The nature of their progenitors and pre-explosion mass loss…

High Energy Astrophysical Phenomena · Physics 2026-04-15 Zexi Niu , Ning-Chen Sun , Emmanouil Zapartas , Conor L. Ransome , Justyn R. Maund , Cesar Rojas-Bravo , Jifeng Liu

We present radiation-hydrodynamics simulations of core-collapse supernova (SN) explosions, artificially generated by driving a piston at the base of the envelope of a rotating or non-rotating red-supergiant progenitor star. We search for…

Solar and Stellar Astrophysics · Physics 2015-05-19 Luc Dessart , Eli Livne , Roni Waldman

Type II-plateau supernovae (SNe IIP) are the most numerous subclass of core-collapse SNe originating from massive stars. In the framework of the neutrino-driven explosion mechanism, we study the SN outburst properties for a red supergiant…

Solar and Stellar Astrophysics · Physics 2017-09-06 V. P. Utrobin , A. Wongwathanarat , H. -Th. Janka , E. Mueller

The Zwicky Transient Facility Census of the Local Universe survey yielded a sample of 330 Type IIP supernovae (SNe) with well-constrained peak luminosities. In paper I (arXiv:2502.19493), we measured their luminosity function and volumetric…

Much controversy surrounds the inferred progenitor masses of Type II-Plateau (II-P) supernovae (SNe). The debate is nourished by the discrepant results from radiation-hydrodynamics simulations, from pre-explosion imaging, and from studies…

Solar and Stellar Astrophysics · Physics 2019-05-08 Luc Dessart , D. John Hillier

Supernova (SN) 2008bk is a well observed low-luminosity Type II event visually associated with a low-mass red-supergiant progenitor. To model SN 2008bk, we evolve a 12Msun star from the main sequence until core collapse, when it has a total…

Solar and Stellar Astrophysics · Physics 2017-01-18 Sergey Lisakov , Luc Dessart , D. John Hillier , Roni Waldman , Eli Livne

A set of hydrodynamical models based on stellar evolutionary progenitors is used to study the nature of SN 2011dh. Our modeling suggests that a large progenitor star ---with R ~200 Rsun---, is needed to reproduce the early light curve of SN…

The progenitor and explosion properties of type II supernovae (SNe II) are fundamental to understand the evolution of massive stars. Special interest has been given to the range of initial masses of their progenitors, but despite the…

Solar and Stellar Astrophysics · Physics 2020-10-14 L. Martinez , M. C. Bersten , J. P. Anderson , S. González-Gaitán , F. Förster , G. Folatelli

Photometric and spectroscopic data for two Low Luminosity Type IIP Supernovae (LL SNe IIP) are presented. SN 2020cxd reaches a peak absolute magnitude $M_{r}$ = -13.90 $\pm$ 0.05 mag two days after explosion, subsequently settling on a…

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