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Showing 1–10 of 10 results for author: Perenon, L

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  1. Measuring dark energy with expansion and growth

    Authors: Louis Perenon, Matteo Martinelli, Roy Maartens, Stefano Camera, Chris Clarkson

    Abstract: We combine cosmic chronometer and growth of structure data to derive the redshift evolution of the dark energy equation of state $w$, using a novel agnostic approach. The background and perturbation equations lead to two expressions for $w$, one purely background-based and the other relying also on the growth rate of large-scale structure. We compare the features and performance of the growth-base… ▽ More

    Submitted 20 September, 2022; v1 submitted 24 June, 2022; originally announced June 2022.

    Comments: 10 pages, 6 figures. Version accepted in Physics of the Dark Universe

    Journal ref: Phys.Dark Univ. 37 (2022) 101119

  2. Constraining spatial curvature with large-scale structure

    Authors: Julien Bel, Julien Larena, Roy Maartens, Christian Marinoni, Louis Perenon

    Abstract: We analyse the clustering of matter on large scales in an extension of the concordance model that allows for spatial curvature. We develop a consistent approach to curvature and wide-angle effects on the galaxy 2-point correlation function in redshift space. In particular we derive the Alcock-Paczynski distortion of $fσ_{8}$, which differs significantly from empirical models in the literature. A k… ▽ More

    Submitted 3 October, 2022; v1 submitted 7 June, 2022; originally announced June 2022.

    Comments: 40 pages; 13 figures; Version accepted by JCAP

    Journal ref: JCAP09(2022)076

  3. Multi-tasking the growth of cosmological structures

    Authors: Louis Perenon, Matteo Martinelli, Stéphane Ilić, Roy Maartens, Michelle Lochner, Chris Clarkson

    Abstract: Next-generation large-scale structure surveys will deliver a significant increase in the precision of growth data, allowing us to use `agnostic' methods to study the evolution of perturbations without the assumption of a cosmological model. We focus on a particular machine learning tool, Gaussian processes, to reconstruct the growth rate $f$, the root mean square of matter fluctuations $σ_8$, and… ▽ More

    Submitted 18 October, 2021; v1 submitted 4 May, 2021; originally announced May 2021.

    Comments: 14 pages; 7 figures; Significant improvements. Version accepted by Phys. Dark Universe

    Journal ref: Phys.Dark Univ. 34 (2021) 100898

  4. Improvements in cosmological constraints from breaking growth degeneracy

    Authors: Louis Perenon, Stéphane Ilić, Roy Maartens, Alvaro de la Cruz-Dombriz

    Abstract: The key probes of the growth of large-scale structure are its rate $f$ and amplitude $σ_8$. Redshift space distortions in the galaxy power spectrum allow us to measure only the combination $fσ_8$, which can be used to constrain the standard cosmological model or alternatives. By using measurements of the galaxy-galaxy lensing cross-correlation spectrum or of the galaxy bispectrum, it is possible t… ▽ More

    Submitted 20 July, 2020; v1 submitted 1 May, 2020; originally announced May 2020.

    Comments: 9 pages, 4 figures, 5 tables. Version accepted by Astron. Astrophys

    Journal ref: A&A 642, A116 (2020)

  5. Effective Field Theory of Dark Energy: a Review

    Authors: Noemi Frusciante, Louis Perenon

    Abstract: The discovery of cosmic acceleration has triggered a consistent body of theoretical work aimed at modeling its phenomenology and understanding its fundamental physical nature. In recent years, a powerful formalism that accomplishes both these goals has been developed, the so-called effective field theory of dark energy. It can capture the behavior of a wide class of modified gravity theories and c… ▽ More

    Submitted 7 June, 2020; v1 submitted 6 July, 2019; originally announced July 2019.

    Comments: 144 pages, 24 figures, 7 tables, invited review for Physics Reports

    Journal ref: Phys.Rept. 857 (2020) 1-63

  6. arXiv:1903.08088  [pdf, other

    gr-qc astro-ph.CO

    The effective field theory of dark energy diagnostic of linear Horndeski theories after GW170817 and GRB170817A

    Authors: Louis Perenon, Hermano Velten

    Abstract: We summarise the effective field theory of dark energy construction to explore observable predictions of linear Horndeski theories. Based on \cite{Perenon:2016blf}, we review the diagnostic of these theories on the correlation of the large-scale structure phenomenological functions: the effective Newton constant, the light deflection parameter and the growth function of matter perturbations. We ta… ▽ More

    Submitted 18 March, 2019; originally announced March 2019.

    Comments: Contribution to the Jose Plinio Baptista school on Cosmology held in 2016

    Report number: C16-09-25.1

    Journal ref: Universe 5 (2019) no.6, 138

  7. Optimising growth of structure constraints on modified gravity

    Authors: Louis Perenon, Julien Bel, Roy Maartens, Alvaro de la Cruz-Dombriz

    Abstract: We use growth of structure data to constrain the effective field theory of dark energy. Considering as case study Horndeski theories with the speed of gravitational waves equal to that of light, we show how constraints on the free parameters and the large-scale structure phenomenological functions can be improved by two ingredients: firstly by complementing the set of redshift-space distortions da… ▽ More

    Submitted 31 May, 2019; v1 submitted 30 January, 2019; originally announced January 2019.

    Comments: Accepted for publication in JCAP

    Journal ref: JCAP06(2019)020

  8. Diagnostic of Horndeski Theories

    Authors: Louis Perenon, Christian Marinoni, Federico Piazza

    Abstract: We study the effects of Horndeski models of dark energy on the observables of the large-scale structure in the late time universe. A novel classification into {\it Late dark energy}, {\it Early dark energy} and {\it Early modified gravity} scenarios is proposed, according to whether such models predict deviations from the standard paradigm persistent at early time in the matter domination epoch. W… ▽ More

    Submitted 9 February, 2017; v1 submitted 29 September, 2016; originally announced September 2016.

  9. arXiv:1607.06916  [pdf, other

    astro-ph.CO

    General features of single-scalar field dark energy models

    Authors: Louis Perenon

    Abstract: We present a systematic study of modified gravity (MG) models containing a single scalar field non-minimally coupled to the metric. Despite a large parameter space, exploiting the effective field theory of dark energy (EFT of DE) formulation and imposing simple physical constraints such as stability conditions and (sub-)luminal propagation of perturbations, we arrive at a number of generic predict… ▽ More

    Submitted 23 July, 2016; originally announced July 2016.

    Comments: Proceedings of 51st Rencontres de Moriond

  10. arXiv:1506.03047  [pdf, other

    astro-ph.CO gr-qc hep-ph hep-th

    Phenomenology of dark energy: general features of large-scale perturbations

    Authors: Louis Perenon, Federico Piazza, Christian Marinoni, Lam Hui

    Abstract: We present a systematic exploration of dark energy and modified gravity models containing a single scalar field non-minimally coupled to the metric. Even though the parameter space is large, by exploiting an effective field theory (EFT) formulation and by imposing simple physical constraints such as stability conditions and (sub-)luminal propagation of perturbations, we arrive at a number of gener… ▽ More

    Submitted 10 July, 2015; v1 submitted 9 June, 2015; originally announced June 2015.

    Comments: 24 pages, 7 figures

    Journal ref: JCAP 1511 (2015) no.11, 029