The Carnegie Supernova Project. I. Third Photometry Data Release of Low-redshift Type Ia Supernovae and Other White Dwarf Explosions
Author
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Krisciunas, Kevin
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Contreras, Carlos
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Burns, Christopher R.
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Phillips, M. M.
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Stritzinger, Maximilian D.
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Morrell, Nidia
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Hamuy Wackenhut, Mario
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Anais, Jorge
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Boldt, Luis
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Busta, Luis
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Campillay, Abdo
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Castellón, Sergio
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Folatelli, Gastón
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Freedman, Wendy L.
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González, Consuelo
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Hsiao, Eric Y.
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Krzeminski, Wojtek
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Persson, Sven Eric
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Roth, Miguel
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Salgado, Francisco
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Serón, Jacqueline
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Suntzeff, Nicholas B.
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Torres, Simón
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Filippenko, Alexei V.
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Li, Weidong
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Madore, Barry F.
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DePoy, D. L.
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Marshall, Jennifer L.
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Rheault, Jean-Philippe
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Villanueva, Steven
Admission date
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2019-05-29T13:39:19Z
Available date
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2019-05-29T13:39:19Z
Publication date
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2017
Cita de ítem
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Astronomical Journal, Volumen 154, Issue 5, 2017
Identifier
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00046256
Identifier
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10.3847/1538-3881/aa8df0
Identifier
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https://repositorio.uchile.cl/handle/2250/169052
Abstract
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We present final natural-system optical (ugriBV) and near-infrared (YJH) photometry of 134 supernovae (SNe) with probable white dwarf progenitors that were observed in 2004-2009 as part of the first stage of the Carnegie Supernova Project (CSP-I). The sample consists of 123 Type. Ia SNe, 5 Type. Iax SNe, 2 super-Chandrasekhar SN candidates, 2 Type. Ia SNe interacting with circumstellar matter, and 2 SN. 2006bt-like events. The redshifts of the objects range from z = 0.0037 to 0.0835; the median redshift is 0.0241. For 120 (90%) of these SNe, near-infrared photometry was obtained. Average optical extinction coefficients and color terms are derived and demonstrated to be stable during the five CSP-I observing campaigns. Measurements of the CSP-I near-infrared bandpasses are also described, and near-infrared color terms are estimated through synthetic photometry of stellar atmosphere models. Optical and near-infrared magnitudes of local sequences of tertiary standard stars for each supernova are given, and a new calibration of Y-band magnitudes of the Persson et al. standards in the CSP-I natural system is presented.