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Light Echoes of Historic Transients

Published online by Cambridge University Press:  29 January 2014

Armin Rest
Affiliation:
STScI, 3700 San Martin Dr., Baltimore, MD 21218, USA email: arest@stsci.edu
B. Sinnott
Affiliation:
Department of Physics and Astronomy, McMaster University, Hamilton, Ontario L8S 4M1, Canada
D. L. Welch
Affiliation:
Department of Physics and Astronomy, McMaster University, Hamilton, Ontario L8S 4M1, Canada
J. L. Prieto
Affiliation:
Department of Astrophysical Sciences, Princeton University, 4 Ivy Lane, Princeton, NJ 08544, USA
F. Bianco
Affiliation:
Center for Cosmology and Particle Physics, New York University, 4 Washington Place, New York, NY 10003, USA
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Abstract

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Light echoes, light from a variable source scattered off dust, have been observed for over a century. The recent discovery of light echoes around centuries-old supernovae in the Milky Way and the Large Magellanic Cloud have allowed the spectroscopic characterization of these events, even without contemporaneous photometry and spectroscopy using modern instrumentation. Here we review the recent scientific advances using light echoes of ancient and historic transients, and focus on our latest work on SN 1987A's and Eta Carinae's light echoes.

Type
Contributed Papers
Copyright
Copyright © International Astronomical Union 2014 

References

Andrews, J. E., et al. 2011, ApJ, 731, 47Google Scholar
Boffi, F. R., Sparks, W. B., & Macchetto, F. D. 1999, A&AS, 138, 253Google Scholar
Bond, H. E., et al. 2003, Nature, 422, 405Google Scholar
Boumis, P., Meaburn, J., Bryce, M., & Lopez, J. A. 1998, MNRAS, 294, 61Google Scholar
Burrows, A., Walder, R., Ott, C. D., & Livne, E. 2005, in Astronomical Society of the Pacific Conference Series, Vol. 332, The Fate of the Most Massive Stars, ed. Humphreys, R. & Stanek, K., 350Google Scholar
Cappellaro, E., et al. 2001, ApJ, 549, L215Google Scholar
Catchpole, R. M., et al. 1987, MNRAS, 229, 15PGoogle Scholar
Catchpole, R. M., et al. 1988, MNRAS, 231, 75PCrossRefGoogle Scholar
Catchpole, R. M., et al. 1989, MNRAS, 237, 55PGoogle Scholar
Chevalier, R. A. 1986, ApJ, 308, 225Google Scholar
Couch, W. J., Allen, D. A., & Malin, D. F. 1990, MNRAS, 242, 555Google Scholar
Couderc, P. 1939, Annales d'Astrophysique, 2, 271Google Scholar
Crotts, A. 1988, IAU Circ., 4561, 4Google Scholar
Crotts, A. P. S. & Kunkel, W. E. 1991, ApJ, 366, L73Google Scholar
Crotts, A. P. S., Kunkel, W. E., & Heathcote, S. R. 1995, ApJ, 438, 724Google Scholar
Crotts, A. P. S. & Yourdon, D. 2008, ApJ, 689, 1186Google Scholar
DeLaney, T., et al. 2010, ApJ, 725, 2038Google Scholar
Gallagher, J. S., et al. 2011, in Bulletin of the American Astronomical Society, Vol. 43, American Astronomical Society Meeting Abstracts #217, 337.22Google Scholar
Garnavich, P. M., et al. 2001, in Bulletin of the American Astronomical Society, Vol. 33, American Astronomical Society Meeting Abstracts, 1370Google Scholar
Gouiffes, C., et al. 1988, A&A, 198, L9Google Scholar
Hamuy, M., Suntzeff, N. B., Gonzalez, R., & Martin, G. 1988, AJ, 95, 63Google Scholar
Havlen, R. J. 1972, A&A, 16, 252Google Scholar
Kapteyn, J. C. 1902, Astronomische Nachrichten, 157, 201Google Scholar
Kjær, K., Leibundgut, B., Fransson, C., Jerkstrand, A., & Spyromilio, J. 2010, A&A, 517, A51Google Scholar
Krause, O., Birkmann, S. M., Usuda, T., Hattori, T., Goto, M., Rieke, G. H., & Misselt, K. A. 2008a, Science, 320, 1195Google Scholar
Krause, O., Tanaka, M., Usuda, T., Hattori, T., Goto, M., Birkmann, S., & Nomoto, K. 2008b, Nature, 456, 617Google Scholar
Liu, J.-F., Bregman, J. N., & Seitzer, P. 2003, ApJ, 582, 919Google Scholar
Menzies, J. W., et al. 1987, MNRAS, 227, 39PGoogle Scholar
Miller, A. A., Smith, N., Li, W., Bloom, J. S., Chornock, R., Filippenko, A. V., & Prochaska, J. X. 2010, AJ, 139, 2218Google Scholar
Nisenson, P. & Papaliolios, C. 1999, ApJ, 518, L29Google Scholar
Ortiz, J. L., Sugerman, B. E. K., de La Cueva, I., Santos-Sanz, P., Duffard, R., Gil-Hutton, R., Melita, M., & Morales, N. 2010, A&A, 519, A7Google Scholar
Otsuka, M., et al. 2012, ApJ, 744, 26Google Scholar
Patat, F. 2005, MNRAS, 357, 1161Google Scholar
Patat, F., Benetti, S., Cappellaro, E., & Turatto, M. 2006, MNRAS, 369, 1949Google Scholar
Perrine, C. D. 1903, ApJ, 17, 310Google Scholar
Phillips, M. M., Hamuy, M., Heathcote, S. R., Suntzeff, N. B., & Kirhakos, S. 1990, AJ, 99, 1133Google Scholar
Phillips, M. M., Heathcote, S. R., Hamuy, M., & Navarrete, M. 1988, AJ, 95, 1087Google Scholar
Quinn, J. L., Garnavich, P. M., Li, W., Panagia, N., Riess, A., Schmidt, B. P. & Della Valle, M. 2006, ApJ, 652, 512Google Scholar
Rest, A., et al. 2007, in Bulletin of the American Astronomical Society, Vol. 38, Bulletin of the American Astronomical Society, 935Google Scholar
Rest, A., et al. 2011a, ApJ, 732, 3Google Scholar
Rest, A., et al. 2008a, ApJ, 680, 1137CrossRefGoogle Scholar
Rest, A., et al. 2012a, Nature, 482, 375Google Scholar
Rest, A., Sinnott, B., & Welch, D. L. 2012b, PASA, 29, 466Google Scholar
Rest, A., Sinnott, B., Welch, D. L., Foley, R. J., Narayan, G., Mandel, K., Huber, M. E., & Blondin, S. 2011b, ApJ, 732, 2Google Scholar
Rest, A., et al. 2005a, ApJ, 634, 1103Google Scholar
Rest, A., et al. 2005b, Nature, 438, 1132Google Scholar
Rest, A., et al. 2008b, ApJ, 681, L81Google Scholar
Ritchey, G. W. 1901a, ApJ, 14, 293CrossRefGoogle Scholar
Ritchey, G. W. 1901b, ApJ, 14, 167Google Scholar
Ritchey, G. W. 1902, ApJ, 15, 129Google Scholar
Schaefer, B. E. 1987, ApJ, 323, L47Google Scholar
Schaefer, B. E. 1988, ApJ, 327, 347Google Scholar
Schmidt, B. P., Kirshner, R. P., Leibundgut, B., Wells, L. A., Porter, A. C., Ruiz-Lapuente, P., Challis, P., & Filippenko, A. V. 1994, ApJ, 434, L19Google Scholar
Sinnott, B., Welch, D. L., Rest, A., Sutherland, P. G., & Bergmann, M. 2013, ApJ, 767, 45Google Scholar
Smith, N., Davidson, K., Gull, T. R., Ishibashi, K., & Hillier, D. J. 2003, ApJ, 586, 432Google Scholar
Sparks, W. B., Macchetto, F., Panagia, N., Boffi, F. R., Branch, D., Hazen, M. L. & della Valle, M. 1999, ApJ, 523, 585Google Scholar
Sugerman, B. E. K. 2003, AJ, 126, 1939Google Scholar
Sugerman, B. E. K. 2005, ApJ, 632, L17Google Scholar
Sugerman, B. E. K., et al. 2012, ApJ, 749, 170Google Scholar
Sugerman, B. E. K. & Crotts, A. P. S. 2002, ApJ, 581, L97Google Scholar
Sugerman, B. E. K., Crotts, A. P. S., Kunkel, W. E., Heathcote, S. R., & Lawrence, S. S. 2005a, ApJ, 627, 888Google Scholar
Sugerman, B. E. K., Crotts, A. P. S., Kunkel, W. E., Heathcote, S. R., & Lawrence, S. S. 2005b, ApJS, 159, 60Google Scholar
Suntzeff, N. B., Hamuy, M., Martin, G., Gomez, A., & Gonzalez, R. 1988a, AJ, 96, 1864Google Scholar
Suntzeff, N. B., Heathcote, S., Weller, W. G., Caldwell, N., & Huchra, J. P. 1988b, Nature, 334, 135Google Scholar
Swope, H. H. 1940, Harvard College Observatory Bulletin, 913, 11Google Scholar
van den Bergh, S. 1965a, AJ, 70, 667Google Scholar
van den Bergh, S. 1965b, PASP, 77, 269Google Scholar
van den Bergh, S. 1966, PASP, 78, 74Google Scholar
van den Bergh, S. 1977, PASP, 89, 637Google Scholar
Van Dyk, S. D. 2013, ArXiv e-prints, 1305.6639Google Scholar
Van Dyk, S. D., Li, W., & Filippenko, A. V. 2006, PASP, 118, 351Google Scholar
Wang, L., et al. 2002, ApJ, 579, 671Google Scholar
Wang, X., Li, W., Filippenko, A. V., Foley, R. J., Smith, N., & Wang, L. 2008, ApJ, 677, 1060Google Scholar
Welch, D. L., Clayton, G. C., Campbell, A., Barlow, M. J., Sugerman, B. E. K., Meixner, M., & Bank, S. H. R. 2007, ApJ, 669, 525Google Scholar
Westerlund, B. 1961, PASP, 73, 72Google Scholar
Wheeler, J. C., Maund, J. R., & Couch, S. M. 2008, ApJ, 677, 1091Google Scholar
Whitelock, P. A., et al. 1988, MNRAS, 234, 5PGoogle Scholar
Xu, J., Crotts, A. P. S., & Kunkel, W. E. 1994, ApJ, 435, 274Google Scholar
Xu, J., Crotts, A. P. S., & Kunkel, W. E. 1995, ApJ, 451, 806Google Scholar
Zwicky, F. 1940, Reviews of Modern Physics, 12, 66Google Scholar