AbstractNumerical simulations are an essential component of the study of the nonlinear growth and evolution of cosmic structures. After a brief description of the standard cosmological model, this work sets up the framework within which we can study the gravitational growth of density fluctuations in the universe and motivates the use of particle methods for the numerical modelling of these processes. The second part contains a description of the numerical techniques used to solve Poisson's equation for a very large number of self-gravitating particles in the cosmological context. The work concentrates on the common grid-based methods that are widely used for the largest cosmological simulations, and discusses the migration of these algorit...
The Cosmic Dark Ages and the Epoch of Reionization constitute a crucial missing link in our understa...
In the last century, new observational techniques and discoveries such as the Cosmic Microwave Backg...
We discuss the performance of direct summation codes used in the simulation of astrophysical stellar...
Cosmic structure simulations have improved enormously over the past decade, both in terms of the res...
In this contribution a broad overview of the methodologies of cosmological N-body simulations and a ...
42 pages, 16 figures, accepted for publication in Space Science Reviews, special issue "Clusters of ...
We present a computer code written in c that is designed to simulate structure formation from collis...
We present a hydrodynamical code for cosmological simulations which uses the piecewise parabolic met...
We present a novel solver for an analogue to Poisson's equation in the framework of modified Newtoni...
We discuss the cosmological simulation code GADGET-2, a new massively parallel TreeSPH code, capable...
We provide a novel and efficient algorithm for computing accelerations in theperiodic large-N-body p...
International audienceContext. Existing cosmological simulation methods lack a high degree of parall...
We present a computer code written in C that is designed to simulate structure formation from collis...
We present a novel solver for an analogue to Poisson's equation in the framework of modified Newtoni...
Abstract. The simulation of N particles interacting in a gravitational force field is useful in astr...
The Cosmic Dark Ages and the Epoch of Reionization constitute a crucial missing link in our understa...
In the last century, new observational techniques and discoveries such as the Cosmic Microwave Backg...
We discuss the performance of direct summation codes used in the simulation of astrophysical stellar...
Cosmic structure simulations have improved enormously over the past decade, both in terms of the res...
In this contribution a broad overview of the methodologies of cosmological N-body simulations and a ...
42 pages, 16 figures, accepted for publication in Space Science Reviews, special issue "Clusters of ...
We present a computer code written in c that is designed to simulate structure formation from collis...
We present a hydrodynamical code for cosmological simulations which uses the piecewise parabolic met...
We present a novel solver for an analogue to Poisson's equation in the framework of modified Newtoni...
We discuss the cosmological simulation code GADGET-2, a new massively parallel TreeSPH code, capable...
We provide a novel and efficient algorithm for computing accelerations in theperiodic large-N-body p...
International audienceContext. Existing cosmological simulation methods lack a high degree of parall...
We present a computer code written in C that is designed to simulate structure formation from collis...
We present a novel solver for an analogue to Poisson's equation in the framework of modified Newtoni...
Abstract. The simulation of N particles interacting in a gravitational force field is useful in astr...
The Cosmic Dark Ages and the Epoch of Reionization constitute a crucial missing link in our understa...
In the last century, new observational techniques and discoveries such as the Cosmic Microwave Backg...
We discuss the performance of direct summation codes used in the simulation of astrophysical stellar...