[ascl:2312.009]
GravSphere: Jeans modeling code
Read, J. I.;
Steger, P.;
Walker, M. G.;
Genina, A.;
Frenk, C. S.;
Cole, S.;
Benítez-Llambay, A.;
Ludlow, A. D.;
Navarro, J. F.;
Oman, K. A.;
Robertson, A.;
Collins, M. L. M.;
Ibata, R. A.;
Rich, R. M.;
Martin, N. F.;
Peñarrubia, J.;
Chapman, S. C.;
Tollerud, E. J.;
Weisz, D. R.
The non-parametric Jeans code GravSphere models discrete data and can be used to model dark matter distributions in galaxies. It can also recover the density ρ(r) and velocity anisotropy β(r) of spherical stellar systems, assuming only that they are in a steady state. Real or mock data are prepared by using the included binulator.py code; the repository also includes many examples for exploring the GravSphere's capabilities.
[ascl:1807.003]
PyAutoLens: Strong lens modeling
PyAutoLens models and analyzes galaxy-scale strong gravitational lenses. This automated module suite simultaneously models the lens galaxy's light and mass while reconstructing the extended source galaxy on an adaptive pixel-grid. Source-plane discretization is amorphous, adapting its clustering and regularization to the intrinsic properties of the lensed source. The lens's light is fitted using a superposition of Sersic functions, allowing PyAutoLens to cleanly deblend its light from the source. Bayesian model comparison is used to automatically chose the complexity of the light and mass models. PyAutoLens provides accurate light, mass, and source profiles inferred for data sets representative of both existing Hubble imaging and future Euclid wide-field observations.
[ascl:1510.005]
GALFORM: Galactic modeling
GALFORM is a semi-analytic model for calculating the formation and evolution of galaxies in hierarchical clustering cosmologies. Using a Monte Carlo algorithm to follow the merging evolution of dark matter haloes with arbitrary mass resolution, it incorporates realistic descriptions of the density profiles of dark matter haloes and the gas they contain. It follows the chemical evolution of gas and stars, and the associated production of dust and includes a detailed calculation of the sizes of discs and spheroids.