Fundamental differences between SPH and grid methods O Agertz, B Moore, J Stadel, D Potter, F Miniati, J Read, L Mayer, ... Monthly Notices of the Royal Astronomical Society 380 (3), 963-978, 2007 | 816 | 2007 |
Effects of baryons and dissipation on the matter power spectrum DH Rudd, AR Zentner, AV Kravtsov The Astrophysical Journal 672 (1), 19, 2008 | 434 | 2008 |
CosmoSIS: Modular cosmological parameter estimation J Zuntz, M Paterno, E Jennings, D Rudd, A Manzotti, S Dodelson, S Bridle, ... Astronomy and Computing 12, 45-59, 2015 | 342 | 2015 |
The AGORA high-resolution galaxy simulations comparison project J Kim, T Abel, O Agertz, GL Bryan, D Ceverino, C Christensen, C Conroy, ... The Astrophysical Journal Supplement Series 210 (1), 2014 | 268* | 2014 |
Neutrinos help reconcile planck measurements with the local universe M Wyman, DH Rudd, RA Vanderveld, W Hu Physical Review Letters 112 (5), 051302, 2014 | 232 | 2014 |
Weighing galaxy clusters with gas. II. On the origin of hydrostatic mass bias in ΛCDM galaxy clusters K Nelson, ET Lau, D Nagai, DH Rudd, L Yu The Astrophysical Journal 782 (2), 107, 2014 | 137 | 2014 |
Neutrinos help reconcile Planck measurements with both the early and local Universe C Dvorkin, M Wyman, DH Rudd, W Hu Physical Review D 90 (8), 083503, 2014 | 120 | 2014 |
Computational Eulerian hydrodynamics and Galilean invariance BE Robertson, AV Kravtsov, NY Gnedin, T Abel, DH Rudd Monthly Notices of the Royal Astronomical Society 401 (4), 2463-2476, 2010 | 113 | 2010 |
Deconstructing the kinetic SZ power spectrum LD Shaw, DH Rudd, D Nagai The Astrophysical Journal 756 (1), 15, 2012 | 108 | 2012 |
Evolution of the merger-induced hydrostatic mass bias in galaxy clusters K Nelson, DH Rudd, L Shaw, D Nagai The Astrophysical Journal 751 (2), 121, 2012 | 108 | 2012 |
The effect of gas physics on the halo mass function R Stanek, D Rudd, AE Evrard Monthly Notices of the Royal Astronomical Society: Letters 394 (1), L11-L15, 2009 | 101 | 2009 |
Self-calibration of tomographic weak lensing for the physics of baryons to constrain dark energy AR Zentner, DH Rudd, W Hu Physical Review D 77 (4), 043507, 2008 | 92 | 2008 |
Implementing the DC mode in cosmological simulations with supercomoving variables NY Gnedin, AV Kravtsov, DH Rudd The Astrophysical Journal Supplement Series 194 (2), 46, 2011 | 77 | 2011 |
NONEQUILIBRIUM ELECTRONS AND THE SUNYAEV–ZEL'DOVICH EFFECT OF GALAXY CLUSTERS DH Rudd, D Nagai The Astrophysical Journal 701 (1), L16, 2009 | 77 | 2009 |
Predicting merger-induced gas motions in ΛCDM galaxy clusters D Nagai, ET Lau, C Avestruz, K Nelson, DH Rudd The Astrophysical Journal 777 (2), 137, 2013 | 52 | 2013 |
Improving parallel IO performance of cell-based AMR cosmology applications Y Yu, DH Rudd, Z Lan, NY Gnedin, A Kravtsov, J Wu 2012 IEEE 26th International Parallel and Distributed Processing Symposium …, 2012 | 25 | 2012 |
CDM: Neutrinos help reconcile Planck with the Local Universe M Wyman, DH Rudd, RA Vanderveld, W Hu arXiv preprint arXiv:1307.7715, 2013 | 20 | 2013 |
Performance emulation of cell-based AMR cosmology simulations J Wu, RE Gonz, Z Lan, NY Gnedin, AV Kravtsov, DH Rudd, Y Yu 2011 IEEE International Conference on Cluster Computing, 8-16, 2011 | 13 | 2011 |
A transparent collective I/O implementation Y Yu, J Wu, Z Lan, DH Rudd, NY Gnedin, A Kravtsov 2013 IEEE 27th International Symposium on Parallel and Distributed …, 2013 | 12 | 2013 |
Towards the 2020 vision of the baryon content of galaxy groups and clusters A Kravtsov, A Gonzalez, A Vikhlinin, D Marrone, A Zabludoff, D Nagai, ... arXiv preprint arXiv:0903.0388, 2009 | 5 | 2009 |