SN 2009N: linking normal and subluminous Type II-P SNe
Author
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Takats, K.
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Pumo, M. L.
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Elías-Rosa, N.
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Pastorello, A.
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Pignata Libralato, Giuliano
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Paillas, E.
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Zampieri, L.
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Anderson, J. P.
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Vinko, J.
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Benetti, S.
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Botticella, María Teresa
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Bufano, Filomena
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Campillay, A.
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Cartier Ugarte, Regis
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Ergon, M.
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Folatelli, Gastón
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Foley, R. J.
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Forster, Francisco
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Hamuy Wackenhut, Mario
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Hentunen, V.-P.
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Kankare, E.
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Leloudas, G.
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Morrell, N.
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Nissinen, M.
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Phillips, M. M.
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Smartt, S. J.
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Stritzinger, M.
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Taubenberger, S.
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Valenti, S.
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Van Dyk, S. D.
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Haislip, Joshua B.
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LaCluyze, Aaron P.
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Moore, J. P.
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Reichart, D.
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Admission date
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2014-12-09T19:14:56Z
Available date
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2014-12-09T19:14:56Z
Publication date
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2014-02-11
Cita de ítem
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MNRAS 438, 368–387 (2014)
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Identifier
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doi:10.1093/mnras/stt2203
Identifier
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https://repositorio.uchile.cl/handle/2250/126501
General note
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Arrtículo de publicación ISI.
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Abstract
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We present ultraviolet, optical, near-infrared photometry and spectroscopy of SN 2009N in NGC 4487. This object is a Type II-P supernova with spectra resembling those of subluminous II-P supernovae, while its bolometric luminosity is similar to that of the intermediate-luminosity SN 2008in. We created SYNOW models of the plateau phase spectra for line identification and to measure the expansion velocity. In the near-infrared spectra we find signs indicating possible weak interaction between the supernova ejecta and the pre-existing circumstellar material. These signs are also present in the previously unpublished near-infrared spectra of SN 2008in. The distance to SN 2009N is determined via the expanding photosphere method and the standard candle method as D = 21.6 ± 1.1 Mpc. The produced nickel-mass is estimated to be ∼0.020 ± 0.004 M⊙. We infer the physical properties of the progenitor at the explosion through hydrodynamical modelling of the observables. We find the values of the total energy as ∼0.48 × 1051 erg, the ejected mass as ∼11.5 M⊙, and the initial radius as ∼287 R⊙.