t-channel dark matter at the LHC -- a whitepaper
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arXiv
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| Format: | Preprint |
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2025
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| _version_ | 1866918140917579776 |
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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 |