High resolution dark matter only simulations provide a realistic and fully general means to study the theoretical predictions of cosmological structure formation models for gravitational lensing. Due to the finite number of particles, the density field only becomes smooth on scales beyond a few times the local mean interparticle separation. This introduces noise on the gravitational lensing properties such as the surface mass density, the deflection angles and the magnification. At some small-scale mass limit, the noise due to the discreteness of the N-body simulation becomes comparable to the effects of physical substructures. We present analytic expressions to quantify the Poisson noise and study its scaling with the particle number of th...
Gravitational amplification of Poisson noise in stellar systems is important on large scales. For ex...
Context. An excess of galaxy–galaxy strong lensing (GGSL) in galaxy clusters compared to expectation...
We present the results of weak gravitational lensing statistics in four different cosmological N-bod...
International audienceThe microphysical properties of the dark matter (DM) particle can, in principl...
Gravitational amplification of Poisson noise in stellar systems is important on large scales. For ex...
We critically examine the reliability of the dark matter clustering in high-resolution cosmological ...
none4Galactic-sized gravitational lenses are simulated by combining a cosmological N-body simulation...
We critically examine the reliability of the dark matter clustering in high-resolution cosmological ...
Cold dark matter (CDM) constitutes most of the matter in the Universe. The interplay between dark an...
Gravitational amplification of Poisson noise in stellar systems is important on large scales. For ex...
Context. An excess of galaxy–galaxy strong lensing (GGSL) in galaxy clusters compared to expectation...
We present the results of weak gravitational lensing statistics in four different cosmological N-bod...
International audienceThe microphysical properties of the dark matter (DM) particle can, in principl...
Gravitational amplification of Poisson noise in stellar systems is important on large scales. For ex...
We critically examine the reliability of the dark matter clustering in high-resolution cosmological ...
none4Galactic-sized gravitational lenses are simulated by combining a cosmological N-body simulation...
We critically examine the reliability of the dark matter clustering in high-resolution cosmological ...
Cold dark matter (CDM) constitutes most of the matter in the Universe. The interplay between dark an...
Gravitational amplification of Poisson noise in stellar systems is important on large scales. For ex...
Context. An excess of galaxy–galaxy strong lensing (GGSL) in galaxy clusters compared to expectation...
We present the results of weak gravitational lensing statistics in four different cosmological N-bod...