Christopher Fryer

Affiliations: 
University of Arizona, Tucson, AZ 
Area:
Astronomy and Astrophysics
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"Christopher Fryer"
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Publications

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Andrews S, Fryer C, Even W, et al. (2020) The Nucleosynthetic Yields of Core-collapse Supernovae: Prospects for the Next Generation of Gamma-Ray Astronomy The Astrophysical Journal. 890: 35
Doctor Z, Kessler R, Herner K, et al. (2019) A search for optical emission from binary black hole merger GW170814 with the Dark Energy Camera The Astrophysical Journal. 873: 1-9
Timmes F, Fryer C, Hungerford AL, et al. (2019) Catching Element Formation In The Act ; The Case for a New MeV Gamma-Ray Mission: Radionuclide Astronomy in the 2020s Bulletin of the American Astronomical Society. 51: 2
Venters TM, Walter R, Humensky B, et al. (2019) Energetic Particles of Cosmic Accelerators II: Active Galactic Nuclei and Gamma-ray Bursts Bulletin of the American Astronomical Society. 51: 485
Lloyd-Ronning NM, Fryer C, Miller JM, et al. (2019) Constraints on gamma-ray burst inner engines in a Blandford-Znajek framework Monthly Notices of the Royal Astronomical Society. 485: 203-210
Guzik JA, Fontes CJ, Fryer C. (2018) Opacity Effects on Pulsations of Main-Sequence A-Type Stars Atoms. 6: 31
Becerra L, Ellinger C, Fryer C, et al. (2018) On the Induced Gravitational Collapse: SPH Simulations Astronomy Reports. 62: 840-846
Ritter C, Herwig F, Jones S, et al. (2018) NuGrid stellar data set – II. Stellar yields from H to Bi for stellar models with MZAMS = 1–25 M⊙ and Z = 0.0001–0.02 Monthly Notices of the Royal Astronomical Society. 480: 538-571
Pignatari M, Hoppe P, Trappitsch R, et al. (2018) The neutron capture process in the He shell in core-collapse supernovae: Presolar silicon carbide grains as a diagnostic tool for nuclear astrophysics Geochimica Et Cosmochimica Acta. 221: 37-46
Pignatari M, Herwig F, Hirschi R, et al. (2016) NUGRID STELLAR DATA SET. I. STELLAR YIELDS from H to BI for STARS with METALLICITIES Z = 0.02 and Z = 0.01 Astrophysical Journal, Supplement Series. 225
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