t-channel dark matter at the LHC -- a whitepaper

Fuente: arXiv
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Auteurs principaux: Arina, Chiara, Fuks, Benjamin, Panizzi, Luca, Baker, Michael J., Cornell, Alan S., Heisig, Jan, Maier, Benedikt, Pedro, Rute, Trischuk, Dominique, Agin, Diyar, Arbey, Alexandre, Arcadi, Giorgio, Bagnaschi, Emanuele, Bai, Kehang, Bhatia, Disha, Becker, Mathias, Belyaev, Alexander, Benoit, Ferdinand, Blanke, Monika, Burzynski, Jackson, Butterworth, Jonathan M., Cagnotta, Antimo, Calibbi, Lorenzo, Carpenter, Linda M., Vidal, Xabier Cid, Copello, Emanuele, Corpe, Louie, D'Eramo, Francesco, Deandrea, Aldo, Desai, Aman, Doglioni, Caterina, Dogra, Sunil M., Garny, Mathias, Goodsell, Mark D., Hassan, Sohaib, Harris, Philip Coleman, Harz, Julia, Ibarra, Alejandro, Iorio, Alberto Orso Maria, Kahlhoefer, Felix, Kar, Deepak, Khalil, Shaaban, Khoze, Valery, Ko, Pyungwon, Kraml, Sabine, Landsberg, Greg, Lessa, Andre, Lopez-Honorez, Laura, Mariotti, Alberto, Mitsou, Vasiliki A., Mohan, Kirtimaan, Moon, Chang-Seong, Briceño, Alexander Moreno, Llácer, María Moreno, Munoz-Aillaud, Léandre, Murphy, Taylor, Ncube, Anele M., Nzuza, Wandile, Prat, Clarisse, Rathmann, Lena, Sangweni, Thobani, Sengupta, Dipan, Shepherd, William, Sinha, Sukanya, Tait, Tim M. P., Thamm, Andrea, Tytgat, Michel H. G., Wang, Zirui, Yu, David, Yu, Shin-Shan
Format: Preprint
Publié: 2025
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author Arina, Chiara
Fuks, Benjamin
Panizzi, Luca
Baker, Michael J.
Cornell, Alan S.
Heisig, Jan
Maier, Benedikt
Pedro, Rute
Trischuk, Dominique
Agin, Diyar
Arbey, Alexandre
Arcadi, Giorgio
Bagnaschi, Emanuele
Bai, Kehang
Bhatia, Disha
Becker, Mathias
Belyaev, Alexander
Benoit, Ferdinand
Blanke, Monika
Burzynski, Jackson
Butterworth, Jonathan M.
Cagnotta, Antimo
Calibbi, Lorenzo
Carpenter, Linda M.
Vidal, Xabier Cid
Copello, Emanuele
Corpe, Louie
D'Eramo, Francesco
Deandrea, Aldo
Desai, Aman
Doglioni, Caterina
Dogra, Sunil M.
Garny, Mathias
Goodsell, Mark D.
Hassan, Sohaib
Harris, Philip Coleman
Harz, Julia
Ibarra, Alejandro
Iorio, Alberto Orso Maria
Kahlhoefer, Felix
Kar, Deepak
Khalil, Shaaban
Khoze, Valery
Ko, Pyungwon
Kraml, Sabine
Landsberg, Greg
Lessa, Andre
Lopez-Honorez, Laura
Mariotti, Alberto
Mitsou, Vasiliki A.
Mohan, Kirtimaan
Moon, Chang-Seong
Briceño, Alexander Moreno
Llácer, María Moreno
Munoz-Aillaud, Léandre
Murphy, Taylor
Ncube, Anele M.
Nzuza, Wandile
Prat, Clarisse
Rathmann, Lena
Sangweni, Thobani
Sengupta, Dipan
Shepherd, William
Sinha, Sukanya
Tait, Tim M. P.
Thamm, Andrea
Tytgat, Michel H. G.
Wang, Zirui
Yu, David
Yu, Shin-Shan
author_facet Arina, Chiara
Fuks, Benjamin
Panizzi, Luca
Baker, Michael J.
Cornell, Alan S.
Heisig, Jan
Maier, Benedikt
Pedro, Rute
Trischuk, Dominique
Agin, Diyar
Arbey, Alexandre
Arcadi, Giorgio
Bagnaschi, Emanuele
Bai, Kehang
Bhatia, Disha
Becker, Mathias
Belyaev, Alexander
Benoit, Ferdinand
Blanke, Monika
Burzynski, Jackson
Butterworth, Jonathan M.
Cagnotta, Antimo
Calibbi, Lorenzo
Carpenter, Linda M.
Vidal, Xabier Cid
Copello, Emanuele
Corpe, Louie
D'Eramo, Francesco
Deandrea, Aldo
Desai, Aman
Doglioni, Caterina
Dogra, Sunil M.
Garny, Mathias
Goodsell, Mark D.
Hassan, Sohaib
Harris, Philip Coleman
Harz, Julia
Ibarra, Alejandro
Iorio, Alberto Orso Maria
Kahlhoefer, Felix
Kar, Deepak
Khalil, Shaaban
Khoze, Valery
Ko, Pyungwon
Kraml, Sabine
Landsberg, Greg
Lessa, Andre
Lopez-Honorez, Laura
Mariotti, Alberto
Mitsou, Vasiliki A.
Mohan, Kirtimaan
Moon, Chang-Seong
Briceño, Alexander Moreno
Llácer, María Moreno
Munoz-Aillaud, Léandre
Murphy, Taylor
Ncube, Anele M.
Nzuza, Wandile
Prat, Clarisse
Rathmann, Lena
Sangweni, Thobani
Sengupta, Dipan
Shepherd, William
Sinha, Sukanya
Tait, Tim M. P.
Thamm, Andrea
Tytgat, Michel H. G.
Wang, Zirui
Yu, David
Yu, Shin-Shan
contents This report, summarising work achieved in the context of the LHC Dark Matter Working Group, investigates the phenomenology of $t$-channel dark matter models, spanning minimal setups with a single dark matter candidate and mediator to more complex constructions closer to UV-complete models. For each considered class of models, we examine collider, cosmological and astrophysical implications. In addition, we explore scenarios with either promptly decaying or long-lived particles, as well as featuring diverse dark matter production mechanisms in the early universe. By providing a unified analysis framework, numerical tools and guidelines, this work aims to support future experimental and theoretical efforts in exploring $t$-channel dark matter models at colliders and in cosmology.
format Preprint
id arxiv_https___arxiv_org_abs_2504_10597
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle t-channel dark matter at the LHC -- a whitepaper
Arina, Chiara
Fuks, Benjamin
Panizzi, Luca
Baker, Michael J.
Cornell, Alan S.
Heisig, Jan
Maier, Benedikt
Pedro, Rute
Trischuk, Dominique
Agin, Diyar
Arbey, Alexandre
Arcadi, Giorgio
Bagnaschi, Emanuele
Bai, Kehang
Bhatia, Disha
Becker, Mathias
Belyaev, Alexander
Benoit, Ferdinand
Blanke, Monika
Burzynski, Jackson
Butterworth, Jonathan M.
Cagnotta, Antimo
Calibbi, Lorenzo
Carpenter, Linda M.
Vidal, Xabier Cid
Copello, Emanuele
Corpe, Louie
D'Eramo, Francesco
Deandrea, Aldo
Desai, Aman
Doglioni, Caterina
Dogra, Sunil M.
Garny, Mathias
Goodsell, Mark D.
Hassan, Sohaib
Harris, Philip Coleman
Harz, Julia
Ibarra, Alejandro
Iorio, Alberto Orso Maria
Kahlhoefer, Felix
Kar, Deepak
Khalil, Shaaban
Khoze, Valery
Ko, Pyungwon
Kraml, Sabine
Landsberg, Greg
Lessa, Andre
Lopez-Honorez, Laura
Mariotti, Alberto
Mitsou, Vasiliki A.
Mohan, Kirtimaan
Moon, Chang-Seong
Briceño, Alexander Moreno
Llácer, María Moreno
Munoz-Aillaud, Léandre
Murphy, Taylor
Ncube, Anele M.
Nzuza, Wandile
Prat, Clarisse
Rathmann, Lena
Sangweni, Thobani
Sengupta, Dipan
Shepherd, William
Sinha, Sukanya
Tait, Tim M. P.
Thamm, Andrea
Tytgat, Michel H. G.
Wang, Zirui
Yu, David
Yu, Shin-Shan
High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
High Energy Physics - Experiment
This report, summarising work achieved in the context of the LHC Dark Matter Working Group, investigates the phenomenology of $t$-channel dark matter models, spanning minimal setups with a single dark matter candidate and mediator to more complex constructions closer to UV-complete models. For each considered class of models, we examine collider, cosmological and astrophysical implications. In addition, we explore scenarios with either promptly decaying or long-lived particles, as well as featuring diverse dark matter production mechanisms in the early universe. By providing a unified analysis framework, numerical tools and guidelines, this work aims to support future experimental and theoretical efforts in exploring $t$-channel dark matter models at colliders and in cosmology.
title t-channel dark matter at the LHC -- a whitepaper
topic High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
High Energy Physics - Experiment
url https://arxiv.org/abs/2504.10597