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EuCAPT White Paper: Opportunities and Challenges for Theoretical Astroparticle Physics in the Next Decade

R. Alves Batista, +131 more
TLDR
The European Consortium for Astroparticle Theory (EuCAPT) white paper as mentioned in this paper explores upcoming theoretical opportunities and challenges for our field of research with particular emphasis on the possible synergies among different subfields, and the prospects for solving the most fundamental open questions with multi-messenger observations.
Abstract
Astroparticle physics is undergoing a profound transformation, due to a series of extraordinary new results, such as the discovery of high-energy cosmic neutrinos with IceCube, the direct detection of gravitational waves with LIGO and Virgo, and many others. This white paper is the result of a collaborative effort that involved hundreds of theoretical astroparticle physicists and cosmologists, under the coordination of the European Consortium for Astroparticle Theory (EuCAPT). Addressed to the whole astroparticle physics community, it explores upcoming theoretical opportunities and challenges for our field of research, with particular emphasis on the possible synergies among different subfields, and the prospects for solving the most fundamental open questions with multi-messenger observations.

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Citations
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The Observation of Gravitational Waves from a Binary Black Hole Merger

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Bow-Shock Pulsar Wind Nebulae Searches Aided by the North American Nanohertz Observatory for Gravitational Waves

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Oscillons after Inflation

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A Reverse Shock in GRB 130427A

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A response to O. Arandjelovic's critique of "The reproducibility of research and the misinterpretation of p-values"

TL;DR: The main criticism of my piece in this article seems to be that my calculations rely on testing a point null hypothesis, i.e. the hypothesis that the true effect size is zero.
References
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Predicting the LISA white dwarf binary population in the Milky Way with cosmological simulations

TL;DR: In this article, a high-resolution cosmological simulation of a Milky Way-mass galaxy with a binary population synthesis model for low and intermediate mass stars is presented, which provides a cosmologically realistic star formation and metallicity history for the galaxy.
Journal ArticleDOI

Inflation, Cosmic Perturbations and Non-Gaussianities

TL;DR: In this article, the theory of inflationary perturbations is reviewed at both linear and nonlinear orders and a variety of inflation models, emphasizing their signatures on cosmic perturbation are discussed.
Journal ArticleDOI

Bound-state formation for thermal relic dark matter and unitarity

TL;DR: In this paper, it was shown that the mass of thermal dark matter annihilating via a long-range interaction is significantly affected by the formation and decay of dark matter bound states in the early universe.
Journal ArticleDOI

Effect of low mass dark matter particles on the Sun

TL;DR: In this paper, the effect of dark matter (DM) particles in the Sun, focusing on the possible reduction of the solar neutrinos flux due to the energy carried away by DM particles from the innermost regions of the Sun.
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