Randall L. Cooper, Ph.D.

2008 Harvard University, Cambridge, MA, United States 
Astronomy and Astrophysics
"Randall Cooper"
Mean distance: 3011.56


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Ramesh Narayan grad student 2008 Harvard
 (The physics of Type I X-ray bursts.)
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Misanovic Z, Galloway DK, Cooper RL. (2010) Ignition column depths of helium-rich thermonuclear bursts from 4U 1728-34 Astrophysical Journal. 718: 947-956
Cooper RL. (2008) Damping of type I X-ray burst oscillations by convection Astrophysical Journal. 684: 525-531
Narayan R, Cooper RL. (2007) Generation of type I X-ray burst oscillations by unstable surface modes Astrophysical Journal. 665: 628-636
Fisker JL, Tan W, Görres J, et al. (2007) The 15O(α, γ) 19Ne reaction rate and the stability of thermonuclear burning on accreting neutron stars Astrophysical Journal. 665: 637-641
Cooper RL, Narayan R. (2007) Hydrogen-triggered type I X-ray bursts in a two-zone model Astrophysical Journal. 661: 468-476
Cooper RL, Narayan R. (2007) The latitude of type I X-ray burst ignition on rapidly rotating neutron stars Astrophysical Journal. 657: L29-L32
Cooper RL, Narayan R. (2006) On the physics of type I X-ray bursts on accreting neutron stars at high accretion rates Astrophysical Journal. 648: L123-L126
Cooper RL, Narayan R. (2006) A two-zone model for type i X-ray bursts on accreting neutron stars Astrophysical Journal. 652: 584-596
Remillard RA, Lin D, Cooper RL, et al. (2006) The rates of type I X-ray bursts from transients observed with RXTE: Evidence for black hole event horizons Astrophysical Journal. 646: 407-419
Cooper RL, Mukhopadhyay B, Steeghs D, et al. (2006) On the production and survival of carbon fuel for superbursts on accreting neutron stars: Implications for mass donor evolution Astrophysical Journal. 642: 443-454
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