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Black Hole

Lensing of space time around a black hole. At Oxford we study black holes observationally and theoretically on all size and time scales - it is some of our core work.

Credit: ALAIN RIAZUELO, IAP/UPMC/CNRS. CLICK HERE TO VIEW MORE IMAGES.

Matteo Zennaro

Visitor

Research theme

  • Particle astrophysics & cosmology

Sub department

  • Astrophysics

Research groups

  • Beecroft Institute for Particle Astrophysics and Cosmology
matteo.zennaro@physics.ox.ac.uk
Telephone: 01865283014
Denys Wilkinson Building, room 555E
  • About
  • Publications

Priors on Lagrangian bias parameters from galaxy formation modelling

ArXiv 2110.05408 (2021)

Authors:

Matteo Zennaro, Raul E Angulo, Sergio Contreras, Marcos Pellejero-Ibáñez, Francisco Maion
Details from ArXiV

The BACCO simulation project: biased tracers in real space

ArXiv 2101.12187 (2021)

Authors:

Matteo Zennaro, Raul E Angulo, Marcos Pellejero-Ibáñez, Jens Stücker, Sergio Contreras, Giovanni Aricò
Details from ArXiV

Accelerating Large-Scale-Structure data analyses by emulating Boltzmann solvers and Lagrangian Perturbation Theory.

Open research Europe 1 (2021) 152

Authors:

Giovanni Arico', Raul Angulo, Matteo Zennaro

Abstract:

The linear matter power spectrum is an essential ingredient in all theoretical models for interpreting large-scale-structure observables. Although Boltzmann codes such as CLASS or CAMB are very efficient at computing the linear spectrum, the analysis of data usually requires 10 4-10 6 evaluations, which means this task can be the most computationally expensive aspect of data analysis. Here, we address this problem by building a neural network emulator that provides the linear theory (total and cold) matter power spectrum in about one millisecond with ≈0.2%(0.5%) accuracy over redshifts z ≤ 3 (z ≤ 9), and scales10 -4 ≤ k [ h Mpc -1] < 50. We train this emulator with more than 200,000 measurements, spanning a broad cosmological parameter space that includes massive neutrinos and dynamical dark energy. We show that the parameter range and accuracy of our emulator is enough to get unbiased cosmological constraints in the analysis of a Euclid-like weak lensing survey. Complementing this emulator, we train 15 other emulators for the cross-spectra of various linear fields in Eulerian space, as predicted by 2nd-order Lagrangian Perturbation theory, which can be used to accelerate perturbative bias descriptions of galaxy clustering. Our emulators are specially designed to be used in combination with emulators for the nonlinear matter power spectrum and for baryonic effects, all of which are publicly available at http://www.dipc.org/bacco.
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Modelling the large scale structure of the Universe as a function of cosmology and baryonic physics

ArXiv 1911.08471 (2019)

Authors:

Giovanni Aricò, Raul E Angulo, Carlos Hernández-Monteagudo, Sergio Contreras, Matteo Zennaro, Marcos Pellejero-Ibañez, Yetli Rosas-Guevara
Details from ArXiV

How to add massive neutrinos to your $Λ$CDM simulation -- extending cosmology rescaling algorithms

ArXiv 1905.08696 (2019)

Authors:

Matteo Zennaro, Raúl E Angulo, Giovanni Aricò, Sergio Contreras, Marcos Pellejero-Ibáñez
Details from ArXiV

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