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most citedA multiphysics and multiscale software environment for modeling astrophysical systems

201 citations · 257 across the 3 of their papers we have counts for

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astro-ph2008201 cited

A multiphysics and multiscale software environment for modeling astrophysical systems

Simon Portegies Zwart, Steve McMillan, Stefan Harfst +2

We present MUSE, a software framework for combining existing computational tools for different astrophysical domains into a single multiphysics, multiscale application. MUSE facili…

astro-ph200756 cited

Mixing in massive stellar mergers

E. Gaburov, J. C. Lombardi, S. Portegies Zwart

The early evolution of dense star clusters is possibly dominated by close interactions between stars, and physical collisions between stars may occur quite frequently. Simulating a…

astro-ph2003

Hydrogen Spectra, Molecular Association and Orbital Radii in the Solar System

James C. Lombardi

A relationship between the average orbital radii of the planets and their satellites in the solar system and the spectra of atomic and molecular hydrogen is identified and investig…

astro-ph2003

Modelling Collision Products of Triple-Star Mergers

James C. Lombardi, Ashley P. Thrall, Julia S. Deneva +2

In dense stellar clusters, binary-single and binary-binary encounters can ultimately lead to collisions involving two or more stars. A comprehensive survey of multi-star collisions…

astro-ph2001

Stellar Collisions and Blue Straggler Formation

James C. Lombardi, Frederic A. Rasio

We review recent 3D hydrodynamic calculations of stellar collisions using the Smoothed Particle Hydrodynamics (SPH) method, and we discuss the implications of the results for the f…