The initial condition of young open star clusters provides important information to understand how star forms. However, we carried out star-by-star N-body models using PeTar and found that if OB stars randomly form, the fate of star clusters become unpredictable. The rich kinetical data from Gaia can help to identify the tidal streams of clusters, which can better constrain the initial OB content and improve our understanding of the nature of initial mass function
The formation and evolution of young star clusters and OB associations is fundamental to our underst...
The young star clusters we observe today are the building blocks of a new generation of stars and pl...
Stellar clusters are gravitationally bound groups of stars. Astronomers distinguish two types of ste...
Gaia + PeTar projects combines N-body simulations with Gaia eDR3 data to robustly identify tidal tai...
We present a simple analytical description of the disruption of star clusters in a tidal field, whic...
Star clusters are thought to be the birthplaces of stars as well as the building blocks of galaxies....
The young star clusters we observe today are the building blocks of a new generation of stars and pl...
A major question in astrophysics is how star clusters form. These objects are important, since they ...
We present N-body simulations of realistic globular clusters containing initial mass function in the...
We report the results of a large set of N-body calculations aimed at studying the evolution of multi...
We present N-body simulations of star clusters that initially evolve within a strong compressive tid...
Open clusters and associations are groups of young stars, respectively bound and unbound, that share...
We perform N-body simulations of the early phases of open cluster evolution including a large popula...
Context. Most stars form as part of a star cluster. The most massive clusters in the Milky Way exist...
The formation and evolution of star clusters is fundamental to our understanding of star formation, ...
The formation and evolution of young star clusters and OB associations is fundamental to our underst...
The young star clusters we observe today are the building blocks of a new generation of stars and pl...
Stellar clusters are gravitationally bound groups of stars. Astronomers distinguish two types of ste...
Gaia + PeTar projects combines N-body simulations with Gaia eDR3 data to robustly identify tidal tai...
We present a simple analytical description of the disruption of star clusters in a tidal field, whic...
Star clusters are thought to be the birthplaces of stars as well as the building blocks of galaxies....
The young star clusters we observe today are the building blocks of a new generation of stars and pl...
A major question in astrophysics is how star clusters form. These objects are important, since they ...
We present N-body simulations of realistic globular clusters containing initial mass function in the...
We report the results of a large set of N-body calculations aimed at studying the evolution of multi...
We present N-body simulations of star clusters that initially evolve within a strong compressive tid...
Open clusters and associations are groups of young stars, respectively bound and unbound, that share...
We perform N-body simulations of the early phases of open cluster evolution including a large popula...
Context. Most stars form as part of a star cluster. The most massive clusters in the Milky Way exist...
The formation and evolution of star clusters is fundamental to our understanding of star formation, ...
The formation and evolution of young star clusters and OB associations is fundamental to our underst...
The young star clusters we observe today are the building blocks of a new generation of stars and pl...
Stellar clusters are gravitationally bound groups of stars. Astronomers distinguish two types of ste...