
Reaction rate for carbon burning in massive stars
Author(s) -
C.L. Jiang,
D. Santiago-Gonzalez,
S. Almaraz-Calderon,
K.E. Rehm,
B.B. Back,
K. Auranen,
M.L. Avila,
A.D. Ayangeakaa,
S. Bottoni,
M.P. Carpenter,
C. Dickerson,
B. DiGiovine,
J.P. Greene,
C.R. Hoffman,
R.V.F. Janssens,
B.P. Kay,
S.A. Kuvin,
T. Lauritsen,
R.C. Pardo,
J. Sethi,
D. Seweryniak,
R. Talwar,
C. Ugalde,
S. Zhu,
D. Bourgin,
S. Courtin,
F. Haas,
M. Heine,
G. Fruet,
D. Montanari,
D.G. Jenkins,
L. Morris,
A. Lefebvre-Schuhl,
M. Alcorta,
X. Fang,
X.D. Tang,
B. Bucher,
C.M. Deibel,
S.T. Marley
Publication year - 2018
Publication title -
carolina digital repository (university of north carolina at chapel hill)
Language(s) - English
DOI - 10.17615/xy43-sy76
Subject(s) - stars , carbon star , carbon fibers , astrobiology , environmental science , astronomy , computer science , physics , composite number , algorithm