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Shock breakout emission is light that arises when a shockwave, generated by core-collapse explosion of a massive star, passes through its outer envelope.
Optical Properties of Interstellar Graphite and Silicate Grains
B. T. Draine and H. M. Lee · 1984
Earlier work this paper cites.
Will Dust Black Out SN 1987A?
Eli Dwek · 1988
Earlier work this paper cites.
Spectroscopic Constraints on the Properties of Dust in Active Galactic Nuclei
Ari Laor and Bruce T. Draine · 1993
Earlier work this paper cites.
SExtractor: Software for source extraction
E. Bertin and S. Arnouts · 1996
Earlier work this paper cites.
Is there an indication of evolution of type ia supernovae from their rise times?
Adam G Riess, Alexei V Filippenko, Weidong Li, and Brian P Schmidt · 1999
Earlier work this paper cites.
Dust Sublimation by Gamma-ray Bursts and Its Implications
E. Waxman and B. T. Draine · 2000
Earlier work this paper cites.
Photoelectric Emission from Interstellar Dust: Grain Charging and Gas Heating
Joseph C. Weingartner and B. T. Draine · 2001
Earlier work this paper cites.
Dust Grain-Size Distributions and Extinction in the Milky Way, Large Magellanic Cloud, and Small Magellanic Cloud
Joseph C. Weingartner and B. T. Draine · 2001
Earlier work this paper cites.
Supernova Interaction with a Circumstellar Medium
R. A. Chevalier and C. Fransson · 2003
Earlier work this paper cites.
An extremely luminous X-ray outburst at the birth of a supernova
A. M. Soderberg, E. Berger, K. L. Page, P. Schady, J. Parrent, D. Pooley, X. Y. Wang, E. O. Ofek, A. Cucchiara, A. Rau, E. Waxman, J. D. Simon, D. C. J. Bock, P. A. Milne, M. J. Page, J. C. Barentine, S. D. Barthelmy, A. P. Beardmore, M. F. Bietenholz, P. Brown, A. Burrows, D. N. Burrows, G. Byrngelson, S. B. Cenko, P. Chandra, J. R. Cummings, D. B. Fox, A. Gal-Yam, N. Gehrels, S. Immler, M. Kasliwal, A. K. H. Kong, H. A. Krimm, S. R. Kulkarni, T. J. Maccarone, P. Mészáros, E. Nakar, P. T. O’Brien, R. A. Overzier, M. de Pasquale, J. Racusin, N. Rea, and D. G. York · 2008
Earlier work this paper cites.
Supernova Shock Breakout from a Red Supergiant
Kevin Schawinski, Stephen Justham, Christian Wolf, Philipp Podsiadlowski, Mark Sullivan, Katrien C. Steenbrugge, Tony Bell, Hermann-Josef Röser, Emma S. Walker, Pierre Astier, Dave Balam, Christophe Balland, Ray Carlberg, Alex Conley, Dominique Fouchez, Julien Guy, Delphine Hardin, Isobel Hook, D. Andrew Howell, Reynald Pain, Kathy Perrett, Chris Pritchet, Nicolas Regnault, and Sukyoung K. Yi · 2008
Earlier work this paper cites.
Optical and Near-Infrared Observations of the Highly Reddened, Rapidly Expanding Type Ia Supernova SN 2006X in M100
Xiaofeng Wang, Weidong Li, Alexei V. Filippenko, Kevin Krisciunas, Nicholas B. Suntzeff, Junzheng Li, Tianmeng Zhang, Jingsong Deng, Ryan J. Foley, Mohan Ganeshalingam, Tipei Li, YuQing Lou, Yulei Qiu, Rencheng Shang, Jeffrey M. Silverman, Shuangnan Zhang, and Youhong Zhang · 2008
Earlier work this paper cites.
Early Supernovae Light Curves Following the Shock Breakout
Ehud Nakar and Re’em Sari · 2010
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Astrometry.net: Blind Astrometric Calibration of Arbitrary Astronomical Images
Dustin Lang, David W. Hogg, Keir Mierle, Michael Blanton, and Sam Roweis · 2010
Earlier work this paper cites.
Shock Breakout from Type Ia Supernova
Anthony L. Piro, Philip Chang, and Nevin N. Weinberg · 2010
Earlier work this paper cites.
The Early UV/Optical Emission from Core-collapse Supernovae
Itay Rabinak and Eli Waxman · 2011
Earlier work this paper cites.
Measuring Reddening with Sloan Digital Sky Survey Stellar Spectra and Recalibrating SFD
Edward F. Schlafly and Douglas P. Finkbeiner · 2011
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Astropy: A community Python package for astronomy
Astropy Collaboration, Thomas P. Robitaille, Erik J. Tollerud, Perry Greenfield, Michael Droettboom, Erik Bray, Tom Aldcroft, Matt Davis, Adam Ginsburg, Adrian M. Price-Whelan, Wolfgang E. Kerzendorf, Alexander Conley, Neil Crighton, Kyle Barbary, Demitri Muna, Henry Ferguson, Frédéric Grollier, Madhura M. Parikh, Prasanth H. Nair, Hans M. Unther, Christoph Deil, Julien Woillez, Simon Conseil, Roban Kramer, James E. H. Turner, Leo Singer, Ryan Fox, Benjamin A. Weaver, Victor Zabalza, Zachary I. Edwards, K. Azalee Bostroem, D. J. Burke, Andrew R. Casey, Steven M. Crawford, Nadia Dencheva, Justin Ely, Tim Jenness, Kathleen Labrie, Pey Lian Lim, Francesco Pierfederici, Andrew Pontzen, Andy Ptak, Brian Refsdal, Mathieu Servillat, and Ole Streicher · 2013
Earlier work this paper cites.
The Very Young Type Ia Supernova 2013dy: Discovery, and Strong Carbon Absorption in Early-time Spectra
WeiKang Zheng, Jeffrey M. Silverman, Alexei V. Filippenko, Daniel Kasen, Peter E. Nugent, Melissa Graham, Xiaofeng Wang, Stefano Valenti, Fabrizio Ciabattari, Patrick L. Kelly, Ori D. Fox, Isaac Shivvers, Kelsey I. Clubb, S. Bradley Cenko, Dave Balam, D. Andrew Howell, Eric Hsiao, Weidong Li, G. Howie Marion, David Sand, Jozsef Vinko, J. Craig Wheeler, and JuJia Zhang · 2013
Earlier work this paper cites.
What can we Learn from the Rising Light Curves of Radioactively Powered Supernovae?
Anthony L. Piro and Ehud Nakar · 2013
Earlier work this paper cites.
Oblique Shock Breakout in Supernovae and Gamma-Ray Bursts. I. Dynamics and Observational Implications
Christopher D. Matzner, Yuri Levin and Stephen Ro · 2013
Earlier work this paper cites.
A Wolf-Rayet-like progenitor of SN 2013cu from spectral observations of a stellar wind
Avishay Gal-Yam, I. Arcavi, E. O. Ofek, S. Ben-Ami, S. B. Cenko, M. M. Kasliwal, Y. Cao, O. Yaron, D. Tal, J. M. Silverman, A. Horesh, A. De Cia, F. Taddia, J. Sollerman, D. Perley, P. M. Vreeswijk, S. R. Kulkarni, P. E. Nugent, A. V. Filippenko, and J. C. Wheeler · 2014
Earlier work this paper cites.
Supernovae with Two Peaks in the Optical Light Curve and the Signature of Progenitors with Low-mass Extended Envelopes
Ehud Nakar and Anthony L. Piro · 2014
Earlier work this paper cites.
Evidence for dust destruction from the early-time colour change of GRB 120119A
Adam N. Morgan, Daniel A. Perley, S. Bradley Cenko, Joshua S. Bloom, Antonino Cucchiara, Joseph W. Richards, Alexei V. Filippenko, Joshua B. Haislip, Aaron LaCluyze, Alessandra Corsi, Andrea Melandri, Bethany E. Cobb, Andreja Gomboc, Assaf Horesh, Berian James, Weidong Li, Carole G. Mundell, Daniel E. Reichart, and Iain Steele · 2014
Cited alongside, same era.
LMFIT: Non-Linear Least-Square Minimization and Curve-Fitting for Python
Matthew Newville, Till Stensitzki, Daniel B. Allen, and Antonino Ingargiola · 2014
Cited alongside, same era.
APASS - The Latest Data Release
Arne A. Henden, Stephen Levine, Dirk Terrell, and Douglas L. Welch · 2015
Cited alongside, same era.
Shock Breakout and Early Light Curves of Type II-P Supernovae Observed with Kepler
P. M. Garnavich, B. E. Tucker, A. Rest, E. J. Shaya, R. P. Olling, D. Kasen, and A. Villar · 2016
Cited alongside, same era.
Proper Image Subtraction—Optimal Transient Detection, Photometry, and Hypothesis Testing
Barak Zackay, Eran O. Ofek, and Avishay Gal-Yam · 2016
Cited alongside, same era.
Pipeline for the Antarctic Survey Telescope 3-3 in Yaoan, Yunnan
Tianrui Sun, Lei Hu, Songbo Zhang, Xiaoyan Li, Kelai Meng, Xuefeng Wu, Lifan Wang, and A. J. Castro-Tirado · 2022
Later among the works it cites.
Image Subtraction in Fourier Space
Lei Hu, Lifan Wang, Xingzhuo Chen, and Jiawen Yang · 2022
Later among the works it cites.
The Effects of Circumstellar Dust Scattering on the Light Curves and Polarizations of Type Ia Supernovae
Maokai Hu, Lifan Wang, and Xiaofeng Wang · 2022
Later among the works it cites.
Shock cooling emission from explosions of red supergiants - I. A numerically calibrated analytic model
Jonathan Morag, Nir Sapir, and Eli Waxman · 2023
Closest in time.
Transient Discovery Report for 2023-05-19
K. Itagaki · 2023
Closest in time.
LT Classification of SN 2023ixf as a Type II Supernova in M101
D. A. Perley, A. Gal-Yam, I. Irani, and E. Zimmerman · 2023
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VizieR Online Data Catalog: AAVSO Photometric All Sky Survey (APASS) DR9 (Henden+, 2016)
A. A. Henden, M. Templeton, D. Terrell, T. C. Smith, S. Levine, and D. Welch · 2016
Cited alongside, same era.
The Gaia mission
Gaia Collaboration · 2016
Cited alongside, same era.
Confined dense circumstellar material surrounding a regular type II supernova
O. Yaron, D. A. Perley, A. Gal-Yam, J. H. Groh, A. Horesh, E. O. Ofek, S. R. Kulkarni, J. Sollerman, C. Fransson, A. Rubin, P. Szabo, N. Sapir, F. Taddia, S. B. Cenko, S. Valenti, I. Arcavi, D. A. Howell, M. M. Kasliwal, P. M. Vreeswijk, D. Khazov, O. D. Fox, Y. Cao, O. Gnat, P. L. Kelly, P. E. Nugent, A. V. Filippenko, R. R. Laher, P. R. Wozniak, W. H. Lee, U. D. Rebbapragada, K. Maguire, M. Sullivan, and M. T. Soumagnac · 2017
Cited alongside, same era.
UV/Optical Emission from the Expanding Envelopes of Type II Supernovae
Nir Sapir and Eli Waxman · 2017
Cited alongside, same era.
astropy/ccdproc: v1.3.0.post1, December 2017
Matt Craig, Steve Crawford, Michael Seifert, Thomas Robitaille, Brigitta Sipőcz, Josh Walawender, Zè Vinícius, Joe Philip Ninan, Michael Droettboom, Jiyong Youn, Erik Tollerud, Erik Bray, Nathan Walker, VSN Reddy Janga, Connor Stotts, Hans Moritz Günther, Evert Rol, Yoonsoo P. Bach, Larry Bradley, Christoph Deil, Adrian Price-Whelan, Kyle Barbary, Anthony Horton, William Schoenell, Nathan Heidt, Forrest Gasdia, Stefan Nelson, and Ole Streicher · 2017
Cited alongside, same era.
Constraints on the Progenitor of SN 2016gkg from Its Shock-cooling Light Curve
Iair Arcavi, Griffin Hosseinzadeh, Peter J. Brown, Stephen J. Smartt, Stefano Valenti, Leonardo Tartaglia, Anthony L. Piro, José L. Sanchez, Brent Nicholls, Berto L. A. G. Monard, D. Andrew Howell, Curtis McCully, David J. Sand, John Tonry, Larry Denneau, Brian Stalder, Ari Heinze, Armin Rest, Ken W. Smith, and David Bishop · 2017
Cited alongside, same era.
A surge of light at the birth of a supernova
M. C. Bersten, G. Folatelli, F. García, S. D. van Dyk, O. G. Benvenuto, M. Orellana, V. Buso, J. L. Sánchez, M. Tanaka, K. Maeda, A. V. Filippenko, W. Zheng, T. G. Brink, S. B. Cenko, T. de Jaeger, S. Kumar, T. J. Moriya, K. Nomoto, D. A. Perley, I. Shivvers, and N. Smith · 2018
Cited alongside, same era.
Closest in time.
Onset of SN 2023ixf observed over East Asian longitudes
Y. Mao, M. Zhang, G. Cai, J. Chen, J. Chen, X. Gao, K. Li, X. Lyu, Y. Qin, G. Sun, S. Xu, Z. Zhang, J. Zhang, J. Zhao, X. Zheng, W. Zhou, and Q. Ye · 2023
Closest in time.
Circumstellar material ejected violently by a massive star immediately before its death
Jujia Zhang, Han Lin, Xiaofeng Wang, Zeyi Zhao, Liping Li, Jialian Liu, Shengyu Yan, Danfeng Xiang, Huijuan Wang, and Jinming Bai · 2023
Closest in time.
High-resolution Spectroscopy of SN 2023ixf’s First Week: Engulfing the Asymmetric Circumstellar Material
Nathan Smith, Jeniveve Pearson, David J. Sand, Ilya Ilyin, K. Azalee Bostroem, Griffin Hosseinzadeh, and Manisha Shrestha · 2023
Closest in time.
Far-ultraviolet to Near-infrared Observations of SN 2023ixf: A High-energy Explosion Engulfed in Complex Circumstellar Material
Rishabh Singh Teja, Avinash Singh, Judhajeet Basu, G. C. Anupama, D. K. Sahu, Anirban Dutta, Vishwajeet Swain, Tatsuya Nakaoka, Utkarsh Pathak, Varun Bhalerao, Sudhanshu Barway, Harsh Kumar, Nayana A. J., Ryo Imazawa, Brajesh Kumar, and Koji S. Kawabata · 2023
Closest in time.
From Discovery to the First Month of the Type II Supernova 2023ixf: High and Variable Mass Loss in the Final Year before Explosion
Daichi Hiramatsu, Daichi Tsuna, Edo Berger, Koichi Itagaki, Jared A. Goldberg, Sebastian Gomez, Kishalay De, Griffin Hosseinzadeh, K. Azalee Bostroem, Peter J. Brown, Iair Arcavi, Allyson Bieryla, Peter K. Blanchard, Gilbert A. Esquerdo, Joseph Farah, D. Andrew Howell, Tatsuya Matsumoto, Curtis McCully, Megan Newsome, Estefania Padilla Gonzalez, Craig Pellegrino, Jaehyon Rhee, Giacomo Terreran, József Vinkó, and J. Craig Wheeler · 2023
Closest in time.
Millimeter Observations of the Type II SN 2023ixf: Constraints on the Proximate Circumstellar Medium
Edo Berger, Garrett K. Keating, Raffaella Margutti, Keiichi Maeda, Kate D. Alexander, Yvette Cendes, Tarraneh Eftekhari, Mark Gurwell, Daichi Hiramatsu, Anna Y. Q. Ho, Tanmoy Laskar, Ramprasad Rao, and Peter K. G. Williams · 2023
Closest in time.
The SN 2023ixf Progenitor in M101. I. Infrared Variability
Monika D. Soraisam, Tamás Szalai, Schuyler D. Van Dyk, Jennifer E. Andrews, Sundar Srinivasan, Sang-Hyun Chun, Thomas Matheson, Peter Scicluna, and Diego A. Vasquez-Torres · 2023
Closest in time.
Shock Cooling and Possible Precursor Emission in the Early Light Curve of the Type II SN 2023ixf
Griffin Hosseinzadeh, Joseph Farah, Manisha Shrestha, David J. Sand, Yize Dong, Peter J. Brown, K. Azalee Bostroem, Stefano Valenti, Saurabh W. Jha, Jennifer E. Andrews, Iair Arcavi, Joshua Haislip, Daichi Hiramatsu, Emily Hoang, D. Andrew Howell, Daryl Janzen, Jacob E. Jencson, Vladimir Kouprianov, Michael Lundquist, Curtis McCully, Nicolas E. Meza Retamal, Maryam Modjaz, Megan Newsome, Estefania Padilla Gonzalez, Jeniveve Pearson, Craig Pellegrino, Aravind P. Ravi, Daniel E. Reichart, Nathan Smith, Giacomo Terreran, and József Vinkó · 2023
Closest in time.
SN 2023ixf in Messier 101: A Variable Red Supergiant as the Progenitor Candidate to a Type II Supernova
Charles D. Kilpatrick, Ryan J. Foley, Wynn V. Jacobson-Galán, Anthony L. Piro, Stephen J. Smartt, Maria R. Drout, Alexander Gagliano, Christa Gall, Jens Hjorth, David O. Jones, Kaisey S. Mandel, Raffaella Margutti, Enrico Ramirez-Ruiz, Conor L. Ransome, V. Ashley Villar, David A. Coulter, Hua Gao, David Jacob Matthews, Kirsty Taggart, and Yossef Zenati · 2023
Closest in time.
The Dusty and Extremely Red Progenitor of the Type II Supernova 2023ixf in Messier 101
Danfeng Xiang, Jun Mo, Lingzhi Wang, Xiaofeng Wang, Jujia Zhang, Han Lin, and Lifan Wang · 2023
Closest in time.
Further constraints on the eruption time of SN 2023ixf in M101
Vasilii Chufarin, Nikolay Potapov, Ivan Ionov, Stanislav Korotkiy, Sergey Nazarov, and Kirill Sokolovsky · 2023
Closest in time.
Pre-Discovery Images of SN 2023ixf on 18th May 2023 21:19:13 UTC
N. Hamann · 2023
Closest in time.
Multi-Band Photometric Follow-up of SN 2023ixf
M. R. Kendurkar and D. D. Balam · 2023
Closest in time.
ZTF Pre-Discovery Forced Photometry of SN 2023ixf
Daniel A. Perley and Ido Irani · 2023
Closest in time.
Possible circumstellar interaction origin of the early excess emission in thermonuclear supernovae
Maokai Hu, Lifan Wang, Xiaofeng Wang, and Lingzhi Wang · 2023
Closest in time.
Early Time Spectropolarimetry of the Aspherical Type II Supernova SN 2023ixf
Sergiy S. Vasylyev, Yi Yang, Alexei V. Filippenko, Kishore C. Patra, Thomas G. Brink, Lifan Wang, Ryan Chornock, Raffaella Margutti, Elinor L. Gates, Adam J. Burgasser, Preethi R. Karpoor, Natalie LeBaron, Emma Softich, Christopher A. Theissen, Eli Wiston, and WeiKang Zheng · 2023
Closest in time.