JG
James Guillochon
astro-ph.HEastro-ph.GAastro-ph.SRastro-ph.IMastro-ph.COastro-ph.EPacceleration of particlescosmic raysgalaxies: activegamma rays: galaxies
On Valency
published · living versionsW_768tbu4g·v1 · currentpublished
Optical Flashes from Beam-Driven Light Sails with the Roman, Rubin and Euclid Observatories
with Abraham Loeb
1 version
Preprints & journals
62 papers in the corpus · 2009–2026Optical Flashes from Beam-Driven Light Sails with the Roman, Rubin and Euclid ObservatoriesW_768tbu4g_v1 · James Guillochon, Abraham Loeb2026 · 0 citationson Valency
Optical Flashes from Beam-Driven Light Sails with the Roman, Rubin and Euclid Observatories2609.07574v1 · James Guillochon, Abraham Loeb2026 · 0 citationsarXiv
A Self-Sustaining Black Hole Engine Powered by the Tidal Disruptions of Stars2608.28947v1 · James Guillochon, Avi Loeb2026 · 0 citationsarXiv
The γ-ray afterglows of tidal disruption events.27453685 · Chen, Xian, Gómez-Vargas, Germán Arturo, Guillochon, James2023 · 15 citationsMonthly notices of the Royal Astronomical Society. 2016;458(3):3314-3323
Low-mass White Dwarfs with Hydrogen Envelopes as a Missing Link in the Tidal Disruption Menu1701.08162v3 · Jamie Law-Smith, Morgan MacLeod, James Guillochon et al.2017 · 57 citationsApJ 841, 132 (2017)
Stellar Tidal Disruption Events with Abundances and Realistic Structures (STARS): Library of Fallback Rates2007.10996v3 · Jamie A.P. Law-Smith, David A. Coulter, James Guillochon et al.2020 · 78 citationsApJ, 905, 141 (2020)
The tidal disruption event AT2017eqx: spectroscopic evolution from hydrogen rich to poor suggests an atmosphere and outflow1904.10571v2 · M. Nicholl, P. K. Blanchard, E. Berger et al.2019 · 77 citationsMNRAS, 488, 1878 (2019)
Models and Simulations for the Photometric LSST Astronomical Time Series Classification Challenge (PLAsTiCC)1903.11756v2 · R. Kessler, G. Narayan, A. Avelino et al.2019 · 150 citationsarXiv
Constraining the Stellar Mass Function from the Deficiency of Tidal Disruption Flares in the Nuclei of Massive Galaxies1807.00029v2 · Daniel J. D'Orazio, Abraham Loeb, James Guillochon2018 · 12 citationsarXiv
Weighing Black Holes using Tidal Disruption Events1801.08221v3 · Brenna Mockler, James Guillochon, Enrico Ramirez-Ruiz2018 · 246 citationsarXiv
Catching Element Formation In The Act1902.02915v1 · Chris L. Fryer, Frank Timmes, Aimee L. Hungerford et al.2019 · 17 citationsarXiv
Discovery and Follow-up of the Unusual Nuclear Transient OGLE17aaj1901.03718v1 · M. Gromadzki, A. Hamanowicz, L. Wyrzykowski et al.2019 · 35 citationsarXiv
Shock Breakouts from Tidal Disruption Events1808.10447v2 · Almog Yalinewich, James Guillochon, Re'em Sari et al.2018 · 17 citationsarXiv
Serendipitous Discovery of a 14-year-old Supernova at 16 Mpc1809.00163v1 · James Guillochon, Jorge Stockler de Moraes, Matt Nicholl et al.2018 · 0 citationsarXiv
Spitzer Space Telescope Infrared Observations of the Binary Neutron Star Merger GW1708171805.08192v1 · V. A. Villar, P. S. Cowperthwaite, E. Berger et al.2018 · 46 citationsarXiv
Multi-Messenger Astrophysics: Harnessing the Data Revolution1807.04780v1 · Gabrielle Allen, Warren Anderson, Erik Blaufuss et al.2018 · 7 citationsarXiv
Revisiting hypervelocity stars after Gaia DR21804.10179v3 · Douglas Boubert, James Guillochon, Keith Hawkins et al.2018 · 93 citationsarXiv
Observations of SN 2015F suggest a correlation between the intrinsic luminosity of Type Ia supernovae and the shape of their light curves >900 days after explosion1711.01275v3 · Or Graur, David R. Zurek, Armin Rest et al.2017 · 32 citationsarXiv
MOSFiT: Modular Open-Source Fitter for Transients1710.02145v2 · James Guillochon, Matt Nicholl, V. Ashley Villar et al.2017 · 227 citationsarXiv
Open Astronomy Catalogs API1804.10847v1 · James Guillochon, Philip S. Cowperthwaite2018 · 2 citationsarXiv
A dependence of the tidal disruption event rate on global stellar surface mass density and stellar velocity dispersion1707.02986v3 · Or Graur, K. Decker French, H. Jabran Zahid et al.2017 · 93 citationsarXiv
The magnetar model for Type I superluminous supernovae I: Bayesian analysis of the full multicolour light curve sample with MOSFiT1706.00825v3 · Matt Nicholl, James Guillochon, Edo Berger2017 · 281 citations2017, ApJ, 850, 55
The Electromagnetic Counterpart of the Binary Neutron Star Merger LIGO/VIRGO GW170817. II. UV, Optical, and Near-IR Light Curves and Comparison to Kilonova Models1710.05840v1 · P. S. Cowperthwaite, E. Berger, V. A. Villar et al.2017 · 1,016 citationsarXiv
The Galactic Distribution of Fragments Formed from Tidally Disrupted Stars1707.03421v1 · Eden Girma, James Guillochon2017 · 0 citationsarXiv
Optical Thermonuclear Transients From Tidal Compression of White Dwarfs as Tracers of the Low End of the Massive Black Hole Mass Function1508.02399v3 · Morgan MacLeod, James Guillochon, Enrico Ramirez-Ruiz et al.2015 · 104 citationsarXiv
The fine line between total and partial tidal disruption events1702.07730v2 · Deborah Mainetti, Alessandro Lupi, Sergio Campana et al.2017 · 80 citationsarXiv
New physical insights about Tidal Disruption Events from a comprehensive observational inventory at X-ray wavelengths1611.02291v2 · Katie Auchettl, James Guillochon, Enrico Ramirez-Ruiz2016 · 265 citationsarXiv
Optical/UV-to-X-Ray Echoes from the Tidal Disruption Flare ASASSN-14li1703.07024v1 · Dheeraj R. Pasham, S. Bradley Cenko (NASA/GSFC, JSI) et al.2017 · 36 citationsarXiv
Enabling New ALMA Science with Improved Support for Time-Domain Observations1703.04692v1 · Kate D. Alexander, Edo Berger, Geoff Bower et al.2017 · 0 citationsarXiv
A likely decade-long sustained tidal disruption event1702.00792v1 · Dacheng Lin, James Guillochon, S. Komossa et al.2017 · 102 citationsarXiv
Simulations of Magnetic Fields in Tidally-Disrupted Stars1609.08160v2 · James Guillochon, Michael McCourt ( Harvard, UCSB)2016 · 49 citationsarXiv
OGLE16aaa - a Signature of a Hungry Super Massive Black Hole1606.03125v2 · \Lukasz Wyrzykowski, M.Zieli'nski, A.Hamanowicz et al.2016 · 61 citationsarXiv
Prompt Radiation and Mass Outflows from the Stream-Stream Collisions of Tidal Disruption Events1603.07733v1 · Yan-Fei Jiang, James Guillochon, Abraham Loeb2016 · 157 citationsarXiv
The Astropy Problem1610.03159v1 · Demitri Muna, Michael Alexander, Alice Allen et al.2016 · 5 citationsarXiv
The X-ray through Optical Fluxes and Line Strengths of Tidal Disruption Events1510.08454v2 · Nathaniel Roth, Daniel Kasen, James Guillochon et al.2015 · 211 citationsarXiv
Discovery of an outflow from radio observations of the tidal disruption event ASASSN-14li1510.01226v2 · Kate D. Alexander, Edo Berger, James Guillochon et al.2015 · 213 citationsApJ, 819, L25 (2016)
The Gamma-ray Afterglows of Tidal Disruption Events1512.06124v2 · Xian Chen (PUC), Germ'an G'omez-Vargas (PUC), James Guillochon (Harvard)2015 · 16 citationsarXiv
An Ultraviolet Spectrum of the Tidal Disruption Flare ASASSN-14li1601.03331v2 · S. Bradley Cenko, Antonino Cucchiara, Nathaniel Roth et al.2016 · 87 citationsarXiv
Thermonuclear detonations ensuing white dwarf mergers1508.02402v2 · Marius Dan, James Guillochon, Marcus Bruggen et al.2015 · 48 citationsarXiv
Flows of X-ray gas reveal the disruption of a star by a massive black hole1510.06348v1 · Jon M. Miller, Jelle S. Kaastra, M. Coleman Miller et al.2015 · 219 citationsarXiv
Observational Cosmology With Semi-Relativistic Stars1411.5030v3 · Abraham Loeb, James Guillochon2014 · 6 citationsarXiv
A Luminous, Fast Rising UV-Transient Discovered by ROTSE: a Tidal Disruption Event?1410.6014v2 · J. Vinko, F. Yuan, R. M. Quimby et al.2014 · 92 citationsarXiv
Illuminating Massive Black Holes With White Dwarfs: Orbital Dynamics and High Energy Transients from Tidal Interactions1405.1426v2 · Morgan MacLeod, Jacqueline Goldstein, Enrico Ramirez-Ruiz et al.2014 · 98 citationsarXiv
The Fastest Unbound Stars in the Universe1411.5022v2 · James Guillochon, Abraham Loeb2014 · 28 citationsarXiv
Turbovelocity Stars: Kicks Resulting From the Tidal Disruption of Solitary Stars1305.4634v2 · Haik Manukian, James Guillochon, Enrico Ramirez-Ruiz et al.2013 · 69 citationsarXiv
Spoon-Feeding Giant Stars to Supermassive Black Holes: Episodic Mass Transfer from Evolving Stars and Their Contribution to the Quiescent Activity of Galactic Nuclei1307.2900v2 · Morgan MacLeod, Enrico Ramirez-Ruiz, Sean Grady et al.2013 · 89 citationsarXiv
Circumstellar absorption in double detonation Type Ia supernovae1302.2916v3 · Ken J. Shen, James Guillochon, Ryan J. Foley2013 · 92 citationsarXiv
PS1-10jh: The Disruption of a Main-Sequence Star of Near-Solar Composition1304.6397v2 · James Guillochon, Haik Manukian, Enrico Ramirez-Ruiz2013 · 315 citationsarXiv
On the Survivability and Metamorphism of Tidally Disrupted Giant Planets: the Role of Dense Cores1211.1971v1 · Shang-Fei Liu, James Guillochon, Douglas N. C. Lin et al.2012 · 63 citationsarXiv
The dynamics, appearance and demographics of relativistic jets triggered by tidal disruption of stars in quiescent supermassive black holes1205.1507v1 · Fabio De Colle, James Guillochon, Jill Naiman et al.2012 · 112 citationsarXiv
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