Muestra métricas de impacto externas asociadas a la publicación. Para mayor detalle:
| Indexado |
|
||||
| DOI | 10.1093/MNRAS/STV1522 | ||||
| Año | 2015 | ||||
| Tipo | artículo de investigación |
Citas Totales
Autores Afiliación Chile
Instituciones Chile
% Participación
Internacional
Autores
Afiliación Extranjera
Instituciones
Extranjeras
We assemble a sample of 24 hydrogen-poor superluminous supernovae (SLSNe). Parameterizing the light-curve shape through rise and decline time-scales shows that the two are highly correlated. Magnetar-powered models can reproduce the correlation, with the diversity in rise and decline rates driven by the diffusion time-scale. Circumstellar interaction models can exhibit a similar rise-decline relation, but only for a narrow range of densities, which may be problematic for these models. We find that SLSNe are approximately 3.5 mag brighter and have light curves three times broader than SNe Ibc, but that the intrinsic shapes are similar. There are a number of SLSNe with particularly broad light curves, possibly indicating two progenitor channels, but statistical tests do not cleanly separate two populations. The general spectral evolution is also presented. Velocities measured from Fe II are similar for SLSNe and SNe Ibc, suggesting that diffusion time differences are dominated by mass or opacity. Flat velocity evolution in most SLSNe suggests a dense shell of ejecta. If opacities in SLSNe are similar to other SNe Ibc, the average ejected mass is higher by a factor 2-3. Assuming. = 0.1 cm(2) g(-1), we estimate a mean (median) SLSN ejecta mass of 10 M-circle dot (6 M-circle dot), with a range of 3-30 M-circle dot. Doubling the assumed opacity brings the masses closer to normal SNe Ibc, but with a high-mass tail. The most probable mechanism for generating SLSNe seems to be the core collapse of a very massive hydrogen-poor star, forming a millisecond magnetar.
| Ord. | Autor | Género | Institución - País |
|---|---|---|---|
| 1 | Nicholl, M. | Hombre |
Queens Univ Belfast - Reino Unido
Queen's University Belfast - Reino Unido |
| 2 | Smartt, Stephen J. | Hombre |
Queens Univ Belfast - Reino Unido
Queen's University Belfast - Reino Unido |
| 3 | Jerkstrand, A. | Hombre |
Queens Univ Belfast - Reino Unido
Queen's University Belfast - Reino Unido |
| 4 | Inserra, C. | Hombre |
Queens Univ Belfast - Reino Unido
Queen's University Belfast - Reino Unido |
| 5 | Sim, S. A. | Hombre |
Queens Univ Belfast - Reino Unido
Queen's University Belfast - Reino Unido |
| 6 | Chen, Ting-Wan | - |
Queens Univ Belfast - Reino Unido
Queen's University Belfast - Reino Unido |
| 7 | Benetti, Stefano | Hombre |
Osserv Astron Padova - Italia
Osservatorio Astronomico di Padova - Italia |
| 8 | Fraser, M. | Hombre |
UNIV CAMBRIDGE - Reino Unido
Institute of Astronomy - Reino Unido |
| 9 | Gal-Yam, Avishay | Hombre |
Weizmann Inst Sci - Israel
Weizmann Institute of Science Israel - Israel |
| 10 | Kankare, E. | Hombre |
Queens Univ Belfast - Reino Unido
Queen's University Belfast - Reino Unido |
| 11 | Maguire, K. | Mujer |
ESO - Alemania
Observatorio Europeo Austral - Alemania |
| 12 | Smith, K. W. | Hombre |
Queens Univ Belfast - Reino Unido
Queen's University Belfast - Reino Unido |
| 13 | Sullivan, Mark | Hombre |
Univ Southampton - Reino Unido
University of Southampton - Reino Unido |
| 14 | Valenti, S. | Hombre |
UNIV CALIF SANTA BARBARA - Estados Unidos
Global Telescope Network - Estados Unidos University of California, Santa Barbara - Estados Unidos Las Cumbres Observatory Global Telescope Network, Inc - Estados Unidos |
| 15 | Young, D. R. | Hombre |
Queens Univ Belfast - Reino Unido
Queen's University Belfast - Reino Unido |
| 16 | Baltay, C. | Hombre |
YALE UNIV - Estados Unidos
Yale University - Estados Unidos |
| 17 | BAUER, FRANZ ERIK | Hombre |
Pontificia Universidad Católica de Chile - Chile
Instituto Milenio de Astrofísica - Chile Space Sci Inst - Estados Unidos Centro de Excelencia en Astrofísica y Tecnologías Afines - Chile 7820436 - Chile Space Science Institute - Estados Unidos |
| 18 | Baumont, Sylvain | Hombre |
UNIV PARIS 06 - Francia
CNRS - Francia Sorbonne Université - Francia CNRS Centre National de la Recherche Scientifique - Francia Laboratoire de Physique Nucléaire et de Hautes Energies - Francia |
| 19 | Bersier, D. | Hombre |
Liverpool John Moores Univ - Reino Unido
Liverpool John Moores University - Reino Unido |
| 20 | Botticella, Maria Teresa | Mujer |
Osserv Astron Capodimonte - Italia
Osservatorio Astronomico di Capodimonte - Italia |
| 21 | Childress, M. | Hombre |
Australian Natl Univ - Australia
Australian National University - Australia The Australian National University - Australia |
| 22 | De Laurentis, Mariafelicia | - |
CNRS - Francia
UNIV PARIS 06 - Francia Institut d 'Astrophysique de Paris - Francia Sorbonne Université - Francia Institut d’Astrophysique de Paris - Francia |
| 23 | Della Valle, M. | Hombre |
Osserv Astron Capodimonte - Italia
Osservatorio Astronomico di Capodimonte - Italia |
| 24 | Elias-Rosa, Nancy | Mujer |
Osserv Astron Padova - Italia
Osservatorio Astronomico di Padova - Italia |
| 25 | Feindt, U. | - |
Humboldt Univ - Alemania
UNIV BONN - Alemania Humboldt-Universität zu Berlin - Alemania Universität Bonn - Alemania |
| 26 | Frohmaier, C. | Hombre |
Instituto Milenio de Astrofísica - Chile
Universidad de Chile - Chile |
| 27 | Hadjiyska, Elena | Mujer |
YALE UNIV - Estados Unidos
Yale University - Estados Unidos |
| 28 | Guillemot, L. | Hombre |
UNIV PARIS 06 - Francia
CNRS - Francia Sorbonne Université - Francia CNRS Centre National de la Recherche Scientifique - Francia Laboratoire de Physique Nucléaire et de Hautes Energies - Francia |
| 29 | Leloudas, G. | Hombre |
Univ Copenhagen - Dinamarca
Weizmann Institute of Science Israel - Israel Niels Bohr Institute - Dinamarca Niels Bohr Institutet - Dinamarca |
| 30 | Mazzali, P. | Hombre |
Liverpool John Moores Univ - Reino Unido
Liverpool John Moores University - Reino Unido |
| 31 | McKinnon, R. | - |
YALE UNIV - Estados Unidos
Yale University - Estados Unidos |
| 32 | Polshaw, Joe | - |
Queens Univ Belfast - Reino Unido
Queen's University Belfast - Reino Unido |
| 33 | Rabinowitz, David | Hombre |
YALE UNIV - Estados Unidos
Yale University - Estados Unidos |
| 34 | Rostami, S. | - |
YALE UNIV - Estados Unidos
Yale University - Estados Unidos |
| 35 | Scalzo, R. | Hombre |
Australian Natl Univ - Australia
Yale University - Estados Unidos Australian National University - Australia |
| 36 | Schmidt, Brian | Hombre |
Australian Natl Univ - Australia
Australian National University - Australia The Australian National University - Australia |
| 37 | Schulze, Steve | Hombre |
Pontificia Universidad Católica de Chile - Chile
Instituto Milenio de Astrofísica - Chile Australian National University - Australia The Australian National University - Australia |
| 38 | Sollerman, J. | Hombre |
Stockholm Univ - Suecia
Pontificia Universidad Católica de Chile - Chile 7820436 - Chile Stockholms universitet - Suecia Instituto Milenio de Astrofísica - Chile |
| 39 | Taddia, F. | Hombre |
Stockholm Univ - Suecia
Stockholms universitet - Suecia |
| 40 | Yuan, F. | - |
Australian Natl Univ - Australia
Australian National University - Australia The Australian National University - Australia |
| Fuente |
|---|
| FONDECYT |
| European Union |
| STFC |
| Science and Technology Facilities Council |
| Royal Society |
| Seventh Framework Programme |
| FONDECYT grant |
| EU/FP7-ERC grant |
| DNRF |
| European Research Council under the European Union |
| Israel Science Foundation |
| Australian Research Council Centre of Excellence for All-sky Astrophysics (CAASTRO) |
| Kimmel award |
| CONICYT through Fondecyt Grant |
| PRIN-INAF |
| European Union FP7 programme through ERC grant |
| Office of Science of the US Department of Energy |
| PESSTO |
| Minerva grant |
| EU/FP7 via ERC grant |
| ISF grant |
| Weizmann-UK Grant |
| DEL |
| Marie Curie Intra-European Fellowship, within the 7th European Community Framework Programme (FP7) |
| Australian Research Council Laureate Fellowship Grant |
| 'Millennium Institute of Astrophysics' (MAS) of Iniciativa Cientifica Milenio del Ministerio de Economia, Fomento y Turismo |
| Provosts Office at Yale |
| Quantum Universe I-Core Program of the Planning and Budgeting Committee |
| European Organisation for Astronomical Research in the Southern Hemisphere, Chile as part of PESSTO, ESO program |
| 'EMBIGGEN' Anillo ACT1101 |
| Agradecimiento |
|---|
| We thank B. Metzger for helpful comments that improved the manuscript. The research leading to these results has received funding from the European Research Council under the European Union's Seventh Framework Programme (FP7/2007-2013)/ERC Grant agreement no. [291222] (PI: S. J. Smartt) and STFC grants ST/I001123/1 and ST/L000709/1. MN acknowledges a studentship from DEL. This work is based (in part) on observations collected at the European Organisation for Astronomical Research in the Southern Hemisphere, Chile as part of PESSTO, ESO program 188.D-3003, 191.D-0935. MF is supported by the European Union FP7 programme through ERC grant number 320360. SB is partially supported by the PRIN-INAF 2014 with the project Transient Universe: unveiling new types of stellar explosions with PESSTO. NE-R. acknowledges the support from the European Union Seventh Framework Programme (FP7/2007-2013) under grant agreement no. 267251 'Astronomy Fellowships in Italy' (AstroFIt). Research with SkyMapper was conducted in part by the Australian Research Council Centre of Excellence for All-sky Astrophysics (CAASTRO), through project no. CE110001020. BPS acknowledges support from the Australian Research Council Laureate Fellowship Grant LF0992131. DARK is funded by DNRF. MS acknowledges support from the Royal Society and EU/FP7-ERC grant no. [615929]. FEB. acknowledges support by CONICYT through FONDECYT grant 1141218, and 'EMBIGGEN' Anillo ACT1101, LG through FONDECYT grant 3140566, and SS through FONDECYT 3140534. LG and SS also acknowledge Basal-CATA PFB06/2007. FEB, LG and SS acknowledge Project IC120009 'Millennium Institute of Astrophysics' (MAS) of Iniciativa Cientifica Milenio del Ministerio de Economia, Fomento y Turismo. The Yale group thanks the Office of Science of the US Department of Energy, Grant no. DE-FG02-92ER40704 and the Provosts Office at Yale for their support. AG-Y acknowledges support by the EU/FP7 via ERC grant 307260; ISF, Minerva, and Weizmann-UK grants; as well as the Quantum Universe I-Core Program of the Planning and Budgeting Committee and the Israel Science Foundation and the Kimmel Award. KM acknowledges support from a Marie Curie Intra-European Fellowship, within the 7th European Community Framework Programme (FP7). |