Dark Matter Candidates and Searches

Fuente: arXiv
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Autores principales: Bozorgnia, Nassim, Bramante, Joseph, Cline, James M., Curtin, David, McKeen, David, Morrissey, David E., Ritz, Adam, Viel, Simon, Vincent, Aaron C., Zhang, Yue
Formato: Preprint
Publicado: 2024
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author Bozorgnia, Nassim
Bramante, Joseph
Cline, James M.
Curtin, David
McKeen, David
Morrissey, David E.
Ritz, Adam
Viel, Simon
Vincent, Aaron C.
Zhang, Yue
author_facet Bozorgnia, Nassim
Bramante, Joseph
Cline, James M.
Curtin, David
McKeen, David
Morrissey, David E.
Ritz, Adam
Viel, Simon
Vincent, Aaron C.
Zhang, Yue
contents Astrophysical observations suggest that most of the matter in the cosmos consists of a new form that has not been observed on Earth. The nature and origin of this mysterious dark matter are among the most pressing questions in fundamental science. In this review we summarize the current state of dark matter research from two perspectives. First, we provide an overview of the leading theoretical proposals for dark matter. And second, we describe how these proposals have driven a broad and diverse global search program for dark matter involving direct laboratory searches and astrophysical observations. This review is based on a Green Paper on dark matter prepared as part of the 2020 Astroparticle Community Planning initiative undertaken by the Canadian Subatomic Physics community but has been significantly updated to reflect recent advances.
format Preprint
id arxiv_https___arxiv_org_abs_2410_23454
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Dark Matter Candidates and Searches
Bozorgnia, Nassim
Bramante, Joseph
Cline, James M.
Curtin, David
McKeen, David
Morrissey, David E.
Ritz, Adam
Viel, Simon
Vincent, Aaron C.
Zhang, Yue
High Energy Physics - Phenomenology
Astrophysical observations suggest that most of the matter in the cosmos consists of a new form that has not been observed on Earth. The nature and origin of this mysterious dark matter are among the most pressing questions in fundamental science. In this review we summarize the current state of dark matter research from two perspectives. First, we provide an overview of the leading theoretical proposals for dark matter. And second, we describe how these proposals have driven a broad and diverse global search program for dark matter involving direct laboratory searches and astrophysical observations. This review is based on a Green Paper on dark matter prepared as part of the 2020 Astroparticle Community Planning initiative undertaken by the Canadian Subatomic Physics community but has been significantly updated to reflect recent advances.
title Dark Matter Candidates and Searches
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2410.23454