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The optical photometric and spectroscopic investigation of Type IIP supernova 2012A

Published online by Cambridge University Press:  29 January 2014

Rupak Roy
Affiliation:
Aryabhatta Research Institute of Observational Sciences, Nainital, India
Firoza Sutaria
Affiliation:
Indian Institute of Astrophysics, Bangalore, India
Subhash Bose
Affiliation:
Aryabhatta Research Institute of Observational Sciences, Nainital, India
Sean Johnson
Affiliation:
University of Chicago, Chicago, USA
Vikram Dwarkadas
Affiliation:
University of Chicago, Chicago, USA
Brian York
Affiliation:
Space Telescope Science Institute, Baltimore, USA
Brijesh Kumar
Affiliation:
Aryabhatta Research Institute of Observational Sciences, Nainital, India
Brajesh Kumar
Affiliation:
Aryabhatta Research Institute of Observational Sciences, Nainital, India
Vijay K. Bhatt
Affiliation:
Aryabhatta Research Institute of Observational Sciences, Nainital, India
Sayan Chakraborti
Affiliation:
Institute for Theory and Computation, Harvard, USA
Don York
Affiliation:
University of Chicago, Chicago, USA
Adam Ritchey
Affiliation:
University of Washington, Seattle, USA
Gabrielle Saurage
Affiliation:
Apache Point Observatory, Sacramento Mountains, Sunspot, USA
Mary Beth Kaiser
Affiliation:
Johns Hopkins University, Baltimore, Maryland, USA
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Abstract

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Supernova 2012A was discovered on 7.39UT, January, 2012 in the nearby galaxy NGC 3239 at an unfiltered magnitude of 14.6 and classified spectroscopically as a Type IIP event. Here, we present the optical photometric and spectroscopic follow-up of the event during 14d to 130d post explosion.

Type
Contributed Papers
Copyright
Copyright © International Astronomical Union 2014 

References

Elmhamdi, , et al. 2003a, MNRAS 338 939Google Scholar
Elmhamdi, , et al. 2003b, A&A 404 1077Google Scholar
Gandhi, P., et al. 2013, ArXiv, 1303.1565Google Scholar
Landolt, A. U., 1992, AJ 104 340Google Scholar
Lennarz, D., Altmann, D., & Wiebusch, C., 2012, A&A 538 A120Google Scholar
Leonard, D. C., et al. 2002, PASP 114 35Google Scholar
Litvinova, I. Y. & Nadezhin, D. K., 1985, Soviet Astronomy Letters 11 145Google Scholar
Li, W., et al. 2011, MNRAS 412 1441Google Scholar
Moore, B., Newton, J., & Puckett, T., 2012, CBET 2974 1Google Scholar
Pastorello, A., et al. 2004, MNRAS 347 74Google Scholar
Pastorello, A., et al. 2005, MNRAS 360 950Google Scholar
Pastorello, A., et al. 2009, MNRAS 394 2266Google Scholar
Roy, R., et al. 2011a, ApJ 736 76Google Scholar
Roy, R., et al. 2011b, MNRAS 414 167Google Scholar
Roy, R. & Chakraborti, S., 2012, CBET 2975 2Google Scholar
Sahu, D. K., Anupama, G. C., Srividya, S., & Muneer, S., 2006, MNRAS 372 1315Google Scholar
Schlegel, D. J., Finkbeiner, D. P., & Davis, M., 1998, ApJ 500 525Google Scholar
Stanishev, V. & Pursimo, T. 2012, CBET 2974 3Google Scholar