Soundness of dark energy properties
TL;DR: In this article, the authors consider models where the DE equation of state is a free parameter, either constant or time-varying, as well as models where DE and dark matter interact, and finally a model-agnostic parametrization of effects due to modified gravity.
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Abstract: Type Ia Supernovae (SNeIa) used as standardizable candles have been instrumental in the discovery of cosmic acceleration, usually attributed to some form of dark energy (DE). Recent studies have raised the issue of whether intrinsic SNeIa luminosities might evolve with redshift. While the evidence for cosmic acceleration is robust to this possible systematic, the question remains of how much the latter can affect the inferred properties of the DE component responsible for cosmic acceleration. This is the question we address in this work. We use SNeIa distance moduli measurements from the Pantheon and JLA samples. We consider models where the DE equation of state is a free parameter, either constant or time-varying, as well as models where DE and dark matter interact, and finally a model-agnostic parametrization of effects due to modified gravity (MG). When SNeIa data are combined with Cosmic Microwave Background (CMB) temperature and polarization anisotropy measurements, we find strong degeneracies between parameters governing the SNeIa systematics, the DE parameters, and the Hubble constant $H_0$. These degeneracies significantly broaden the DE parameter uncertainties, in some cases leading to ${\cal O}(\sigma)$ shifts in the central values. However, including low-redshift Baryon Acoustic Oscillation and Cosmic Chronometer measurements, as well as CMB lensing measurements, considerably improves the previous constraints, and the only remaining effect of the examined systematic is a $\lesssim 40\%$ broadening of the uncertainties on the DE parameters. The constraints we derive on the MG parameters are instead basically unaffected by the systematic in question. We therefore confirm the overall soundness of dark energy properties.
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Challenges for <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline" id="d1e11224" altimg="si239.svg"><mml:mi mathvariant="normal">Λ</mml:mi></mml:math>CDM: An update
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Planck evidence for a closed Universe and a possible crisis for cosmology
TL;DR: In this paper, the authors further investigate the evidence for a closed universe from Planck, showing that positive curvature naturally explains the anomalous lensing amplitude and removing a well-known tension within the Planck data set concerning the values of cosmological parameters derived at different angular scales.
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On the Evolution of the Hubble Constant with the SNe Ia Pantheon Sample and Baryon Acoustic Oscillations: A Feasibility Study for GRB-Cosmology in 2030
Maria Giovanna Dainotti,B. D. De Simone,T. Schiavone,Giovanni Monni,Enrico Rinaldi,Gaetano Lambiase,Małgorzata Bogdan,Sahil Ugale +7 more
TL;DR: In this article , a Markov-Chain Monte Carlo analysis (MCMC) was used to obtain the value of H0 assuming Gaussian priors to restrict the parameters spaces to values we expect from our prior knowledge of current cosmological models and to avoid phantom Dark Energy models with w <−1.
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Unveiling the Universe with emerging cosmological probes
Michele Ennio Maria Moresco,Lorenzo Amati,Luca Amendola,Simon Birrer,John P. Blakeslee,Michele Cantiello,Andrea Cimatti,Jeremy Darling,M. Della Valle,Maya Fishbach,Claudio Grillo,Nico Hamaus,Daniel E. Holz,Luca Izzo,Raul Jimenez,Elisabeta Lusso,Massimo Meneghetti,Ester Piedipalumbo,Alice Pisani,Alkistis Pourtsidou,Lucia Pozzetti,Miguel Quartin,Guido Risaliti,Piero Rosati,Licia Verde +24 more
TL;DR: A review of the latest advances in emerging "beyond-standard" cosmological probes can be found in this paper , where several different methods can become a key resource for observational cosmology, and the potential synergies and complementarities between the various probes, exploring how they will contribute to the future of modern cosmology.
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