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dc.contributor.author
Gutiérrez, Claudia P.  
dc.contributor.author
Anderson, Joseph P.  
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Hamuy, Mario  
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Morrell, Nidia Irene  
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González Gaitan, Santiago  
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Stritzinger, Maximilian D.  
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Phillips, Mark M.  
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Galbany, Lluis  
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Folatelli, Gaston  
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Dessart, Luc  
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Contreras, Carlos  
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Valle, Massimo Della  
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Freedman, Wendy L.  
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Hsiao, Eric Y.  
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Krisciunas, Kevin  
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Madore, Barry F.  
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Maza, José  
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Suntzeff, Nicholas B.  
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Prieto, Jose Luis  
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González, Luis  
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Cappellaro, Enrico  
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Navarrete, Mauricio  
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Pizzella, Alessandro  
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Ruiz, Maria T.  
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Smith, R. Chris  
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Turatto, Massimo  
dc.date.available
2018-04-09T15:07:34Z  
dc.date.issued
2017-11  
dc.identifier.citation
Gutiérrez, Claudia P.; Anderson, Joseph P.; Hamuy, Mario; Morrell, Nidia Irene; González Gaitan, Santiago; et al.; Type II supernova spectral diversity, I: observations, sample characterization, and spectral line evolution; IOP Publishing; Astrophysical Journal; 850; 1; 11-2017  
dc.identifier.issn
0004-637X  
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http://hdl.handle.net/11336/41312  
dc.description.abstract
We present 888 visual-wavelength spectra of 122 nearby type II supernovae (SNe II) obtained between 1986 and 2009, and ranging between 3 and 363 days post-explosion. In this first paper, we outline our observations and data reduction techniques, together with a characterization based on the spectral diversity of SNe II. A statistical analysis of the spectral matching technique is discussed as an alternative to nondetection constraints for estimating SN explosion epochs. The time evolution of spectral lines is presented and analyzed in terms of how this differs for SNe of different photometric, spectral, and environmental properties: velocities, pseudo-equivalent widths, decline rates, magnitudes, time durations, and environment metallicity. Our sample displays a large range in ejecta expansion velocities, from ∼9600 to ∼1500 km s-1 at 50 days post-explosion with a median Hα value of 7300 km s-1. This is most likely explained through differing explosion energies. Significant diversity is also observed in the absolute strength of spectral lines, characterized through their pseudo-equivalent widths. This implies significant diversity in both temperature evolution (linked to progenitor radius) and progenitor metallicity between different SNe II. Around 60% of our sample shows an extra absorption component on the blue side of the Hα P-Cygni profile ("Cachito" feature) between 7 and 120 days since explosion. Studying the nature of Cachito, we conclude that these features at early times (before ∼35 days) are associated with Si ii λ6355, while past the middle of the plateau phase they are related to high velocity (HV) features of hydrogen lines.  
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application/pdf  
dc.language.iso
eng  
dc.publisher
IOP Publishing  
dc.rights
info:eu-repo/semantics/openAccess  
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https://creativecommons.org/licenses/by-nc-sa/2.5/ar/  
dc.subject
Supernovae  
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Surveys  
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Photometric Techniques  
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Spectroscophy  
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Astronomía  
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Ciencias Físicas  
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CIENCIAS NATURALES Y EXACTAS  
dc.title
Type II supernova spectral diversity, I: observations, sample characterization, and spectral line evolution  
dc.type
info:eu-repo/semantics/article  
dc.type
info:ar-repo/semantics/artículo  
dc.type
info:eu-repo/semantics/publishedVersion  
dc.date.updated
2018-03-26T14:39:49Z  
dc.journal.volume
850  
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1  
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Estados Unidos  
dc.description.fil
Fil: Gutiérrez, Claudia P.. Universidad de Chile; Chile. University of Southampton; Reino Unido  
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Fil: Anderson, Joseph P.. European Southern Observatory Santiago; Chile  
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Fil: Hamuy, Mario. Universidad de Chile; Chile. Millennium Institute Of Astrophysics; Chile  
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Fil: Morrell, Nidia Irene. Las Campanas Observatory; Chile  
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Fil: González Gaitan, Santiago. Millennium Institute Of Astrophysics; Chile. Universidad de Chile; Chile  
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Fil: Stritzinger, Maximilian D.. University Aarhus; Dinamarca  
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Fil: Phillips, Mark M.. Las Campanas Observatory; Chile  
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Fil: Galbany, Lluis. University of Pittsburgh at Johnstown; Estados Unidos. University of Pittsburgh; Estados Unidos  
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Fil: Folatelli, Gaston. Universidad Nacional de La Plata. Facultad de Ciencias Astronómicas y Geofísicas; Argentina  
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Fil: Dessart, Luc. Universidad de Chile; Chile  
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Fil: Contreras, Carlos. Las Campanas Observatory; Chile  
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Fil: Valle, Massimo Della. Osservatorio Astronomico Di Capodimonte; Italia  
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Fil: Freedman, Wendy L.. University of Chicago; Estados Unidos  
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Fil: Hsiao, Eric Y.. Florida State University; Estados Unidos  
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Fil: Krisciunas, Kevin. Texas A&M University; Estados Unidos  
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Fil: Madore, Barry F.. Observatories of the Carnegie Institution for Science; Estados Unidos  
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Fil: Maza, José. Universidad de Chile; Chile  
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Fil: Suntzeff, Nicholas B.. Texas A&M University; Estados Unidos  
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Fil: Prieto, Jose Luis. Millennium Institute Of Astrophysics; Chile. Universidad Diego Portales; Chile  
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Fil: González, Luis. Universidad de Chile; Chile  
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Fil: Cappellaro, Enrico. Osservatorio Astronomico Di Padova; Chile  
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Fil: Navarrete, Mauricio. Las Campanas Observatory; Chile  
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Fil: Pizzella, Alessandro. Università di Padova; Italia  
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Fil: Ruiz, Maria T.. Universidad de Chile; Chile  
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Fil: Smith, R. Chris. Cerro Tololo Inter American Observatory; Chile  
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Fil: Turatto, Massimo. Osservatorio Astronomico Di Padova; Italia  
dc.journal.title
Astrophysical Journal  
dc.relation.alternativeid
info:eu-repo/semantics/altIdentifier/doi/http://dx.doi.org/10.3847/1538-4357/aa8f52  
dc.relation.alternativeid
info:eu-repo/semantics/altIdentifier/url/http://iopscience.iop.org/article/10.3847/1538-4357/aa8f52/meta