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POSYDON: A General-purpose Population Synthesis Code with Detailed Binary-evolution Simulations

delete2023-02-06
delete60
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OA
AI
T
Tassos Fragos *
J
Jeff J. Andrews
S
Simone S. Bavera
C
C. P. L. Berry
S
Scott Coughlin
A
Aaron Dotter
P
Prabin Giri
V
Vicky Kalogera
A
Aggelos K. Katsaggelos
K
Konstantinos Kovlakas
S
Shamal Lalvani
D
Devina Misra
P
Philipp M. Srivastava
秦颖 (Ying Qin)
K
Kyle A. Rocha
J
Jaime Román-Garza
J
Juan G. Serra
P
Petter Stahle
M
Meng Sun
T
Teng Xu
G
Goce Trajcevski
N
Nam Hai Tran
Z
Zepei Xing
E
Emmanouil Zapartas
M
M. Zevin
DOI:10.3847/1538-4365/ac90c1delete
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摘要

摘要

En 中文
Most massive stars are members of a binary or a higher-order stellar system, where the presence of a binary companion can decisively alter their evolution via binary interactions. Interacting binaries are also important astrophysical laboratories for the study of compact objects. Binary population synthesis studies have been used extensively over the last two decades to interpret observations of compact-object binaries and to decipher the physical processes that lead to their formation. Here, we present POSYDON, a novel, publicly available, binary population synthesis code that incorporates full stellar structure and binary-evolution modeling, using the MESA code, throughout the whole evolution of the binaries. The use of POSYDON enables the self-consistent treatment of physical processes in stellar and binary evolution, including: realistic mass-transfer calculations and assessment of stability, internal angular-momentum transport and tides, stellar core sizes, mass-transfer rates, and orbital periods. This paper describes the detailed methodology and implementation of POSYDON, including the assumed physics of stellar and binary evolution, the extensive grids of detailed single- and binary-star models, the postprocessing, classification, and interpolation methods we developed for use with the grids, and the treatment of evolutionary phases that are not based on precalculated grids. The first version of POSYDON targets binaries with massive primary stars (potential progenitors of neutron stars or black holes) at solar metallicity.
Keyword:
ROTATING MASSIVE STARS
EQUATION-OF-STATE
X-RAY BINARIES
PULSATIONAL PAIR INSTABILITY
ELECTRON-CAPTURE SUPERNOVAE
GRAVITATIONAL-WAVE SOURCES
SECULAR ORBITAL EVOLUTION
COMMON-ENVELOPE EVOLUTION
BLACK-HOLE BINARIES
DOUBLE WHITE-DWARFS

期刊

Astrophysical Journal Supplement Series 封面图
Astrophysical Journal Supplement Series
IF:
8.5
论文数:
5.7K
被引数:
4.2W

机构

A
Anhui Normal University
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7.0K
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被引数: 6.8K
T
Tecnologico de Monterrey
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7.6K
论文数: 5.7K
被引数: 5
U
universidad de monterrey
学者数:
435
论文数: 290
被引数: 0
U
university of geneva
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3.6W
论文数: 2.9W
被引数: 35
U
university of glasgow
学者数:
3.5W
论文数: 3.1W
被引数: 37
N
Northwestern University
学者数:
6.2W
论文数: 5.3W
被引数: 3.9K
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