Prospects for fundamental physics with LISA E Barausse, E Berti, T Hertog, SA Hughes, P Jetzer, P Pani, TP Sotiriou, ... General Relativity and Gravitation 52, 1-33, 2020 | 427 | 2020 |
Understanding higher-order nonlocal halo bias at large scales by combining the power spectrum with the bispectrum S Saito, T Baldauf, Z Vlah, U Seljak, T Okumura, P McDonald Physical Review D 90 (12), 123522, 2014 | 228 | 2014 |
On the statistics of biased tracersin the Effective Field Theory of Large Scale Structures R Angulo, M Fasiello, L Senatore, Z Vlah Journal of Cosmology and Astroparticle Physics 2015 (09), 029, 2015 | 178 | 2015 |
Tidal alignment of galaxies J Blazek, Z Vlah, U Seljak Journal of Cosmology and Astroparticle Physics 2015 (08), 015, 2015 | 169 | 2015 |
A Lagrangian effective field theory Z Vlah, M White, A Aviles Journal of Cosmology and Astroparticle Physics 2015 (09), 014, 2015 | 167 | 2015 |
Perturbation theory, effective field theory, and oscillations in the power spectrum Z Vlah, U Seljak, MY Chu, Y Feng Journal of Cosmology and Astroparticle Physics 2016 (03), 057, 2016 | 147 | 2016 |
A new analysis of galaxy 2-point functions in the BOSS survey, including full-shape information and post-reconstruction BAO SF Chen, Z Vlah, M White Journal of Cosmology and Astroparticle Physics 2022 (02), 008, 2022 | 144 | 2022 |
Redshift-space distortions in Lagrangian perturbation theory SF Chen, Z Vlah, E Castorina, M White Journal of Cosmology and Astroparticle Physics 2021 (03), 100, 2021 | 133 | 2021 |
Consistent modeling of velocity statistics and redshift-space distortions in one-loop perturbation theory SF Chen, Z Vlah, M White Journal of Cosmology and Astroparticle Physics 2020 (07), 062, 2020 | 124 | 2020 |
The Gaussian streaming model and convolution Lagrangian effective field theory Z Vlah, E Castorina, M White Journal of Cosmology and Astroparticle Physics 2016 (12), 007, 2016 | 124 | 2016 |
Fast large scale structure perturbation theory using one-dimensional fast Fourier transforms M Schmittfull, Z Vlah, P McDonald Physical Review D 93 (10), 103528, 2016 | 99 | 2016 |
An EFT description of galaxy intrinsic alignments Z Vlah, NE Chisari, F Schmidt Journal of Cosmology and Astroparticle Physics 2020 (01), 025, 2020 | 96 | 2020 |
Lagrangian perturbation theory at one loop order: Successes, failures, and improvements Z Vlah, U Seljak, T Baldauf Physical Review D 91 (2), 023508, 2015 | 88 | 2015 |
Tidal alignment of galaxies. ArXiv e-prints (2015) J. Blazek, R. Mandelbaum, U. Seljak, R. Nakajima, Separating intrinsic alignment and galaxy-galaxy lensing J Blazek, Z Vlah J. Cosmol. Astropart. Phys 5, 41, 2012 | 80 | 2012 |
Very massive tracers and higher derivative biases T Fujita, V Mauerhofer, L Senatore, Z Vlah, R Angulo Journal of Cosmology and Astroparticle Physics 2020 (01), 009, 2020 | 79 | 2020 |
Distribution function approach to redshift space distortions. Part IV: perturbation theory applied to dark matter Z Vlah, U Seljak, P McDonald, T Okumura, T Baldauf Journal of Cosmology and Astroparticle Physics 2012 (11), 009, 2012 | 79 | 2012 |
Perturbative approach to covariance matrix of the matter power spectrum I Mohammed, U Seljak, Z Vlah Monthly Notices of the Royal Astronomical Society 466 (1), 780-797, 2017 | 77 | 2017 |
Extending the modeling of the anisotropic galaxy power spectrum to k= 0.4 hMpc− 1 N Hand, U Seljak, F Beutler, Z Vlah Journal of Cosmology and Astroparticle Physics 2017 (10), 009, 2017 | 66 | 2017 |
Modeling CMB lensing cross correlations with CLEFT C Modi, M White, Z Vlah Journal of Cosmology and Astroparticle Physics 2017 (08), 009, 2017 | 64 | 2017 |
Exploring redshift-space distortions in large-scale structure Z Vlah, M White Journal of Cosmology and Astroparticle Physics 2019 (03), 007, 2019 | 63 | 2019 |