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Searching for long-lived particles beyond the Standard Model at the Large Hadron Collider
Particles beyond the Standard Model (SM) can generically have lifetimes that are long compared to SM particles at the weak scale. When produced at experiments such as the Large Hadron Collider (LHC) at CERN, these long-lived particles (LLPs) can decay far from the interaction vertex of the primary p...
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Lenguaje: | eng |
Publicado: |
2019
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1088/1361-6471/ab4574 http://cds.cern.ch/record/2667527 |
_version_ | 1780962071142203392 |
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author | Alimena, Juliette Beacham, James Borsato, Martino Cheng, Yangyang Cid Vidal, Xabier Cottin, Giovanna De Roeck, Albert Desai, Nishita Curtin, David Evans, Jared A. Knapen, Simon Kraml, Sabine Lessa, Andre Liu, Zhen Mehlhase, Sascha Ramsey-Musolf, Michael J. Russell, Heather Shelton, Jessie Shuve, Brian Verducci, Monica Zurita, Jose Adams, Todd Adersberger, Michael Alpigiani, Cristiano Apresyan, Artur Bainbridge, Robert John Batozskaya, Varvara Beauchesne, Hugues Benato, Lisa Berlendis, S. Bhal, Eshwen Blekman, Freya Borovilou, Christina Boyd, Jamie Brau, Benjamin P. Bryngemark, Lene Buchmueller, Oliver Buschmann, Malte Buttinger, William Campanelli, Mario Cesarotti, Cari Chen, Chunhui Cheng, Hsin-Chia Cheong, Sanha Citron, Matthew Coccaro, Andrea Coco, V. Conte, Eric Cormier, Félix Corpe, Louie D. Craig, Nathaniel Cui, Yanou Dall'Occo, Elena Dallapiccola, C. Darwish, M.R. Davoli, Alessandro de Cosa, Annapaola De Simone, Andrea Delle Rose, Luigi Deppisch, Frank F. Dey, Biplab Diamond, Miriam D. Dienes, Keith R. Dildick, Sven Döbrich, Babette Drewes, Marco Eich, Melanie ElSawy, M. Escalante Del Valle, Alberto Facini, Gabriel Farina, Marco Feng, Jonathan L. Fischer, Oliver Flaecher, H.U. Foldenauer, Patrick Freytsis, Marat Fuks, Benjamin Galon, Iftah Gershtein, Yuri Giagu, Stefano Giammanco, Andrea Gligorov, Vladimir V. Golling, Tobias Grancagnolo, Sergio Gustavino, Giuliano Haas, Andrew Hahn, Kristian Hajer, Jan Hammad, Ahmed Heinrich, Lukas Heisig, Jan Helo, J.C. Hesketh, Gavin Hill, Christopher S. Hirsch, Martin Hohlmann, M. Hulsbergen, W. Huth, John Ilten, Philip Jacques, Thomas Jayatilaka, Bodhitha Jeng, Geng-Yuan Johns, K.A. Kaji, Toshiaki Kasieczka, Gregor Kats, Yevgeny Kazana, Malgorzata Keller, Henning Khlopov, Maxim Yu. Kling, Felix Kolberg, Ted R. Kostiuk, Igor Kuwertz, Emma Sian Kvam, Audrey Landsberg, Greg Lanfranchi, Gaia Lara, Iñaki Ledovskoy, Alexander Linthorne, Dylan Liu, Jia Longarini, Iacopo Lowette, Steven Lubatti, Henry Lutz, Margaret Luo, Jingyu Mamužić, Judita Marinangeli, Matthieu Mariotti, Alberto Marlow, Daniel McCullough, Matthew McDermott, Kevin Mermod, P. Milstead, David Mitsou, Vasiliki A. Montejo Berlingen, Javier Moortgat, Filip Morandini, Alessandro Morris, Alice Polyxeni Morse, David Michael Mrenna, Stephen Nachman, Benjamin Nemevšek, Miha Nesti, Fabrizio Ohm, Christian Pascoli, Silvia Pedro, Kevin Peña, Cristián Pena Rodriguez, Karla Josefina Piedra, Jónatan Pinfold, James L. Policicchio, Antonio Popara, Goran Prisciandaro, Jessica Proffitt, Mason Rauco, Giorgia Redi, Federico Reece, Matthew Reinsvold Hall, Allison Rejeb Sfar, H. Renner, Sophie Roepe, Amber Ronzani, Manfredi Salvioni, Ennio Santra, Arka Sawada, Ryu Scholtz, Jakub Schuster, Philip Schwaller, Pedro Sebastiani, Cristiano Sekmen, Sezen Selvaggi, Michele Si, Weinan Soffi, Livia Stolarski, Daniel Stuart, David Stupak, John Sung, Kevin Taylor, Wendy Templ, Sebastian Thomas, Brooks Torró-Pastor, Emma Trocino, Daniele Trojanowski, Sebastian Trovato, Marco Tsai, Yuhsin Tully, C.G. Vámi, Tamás Álmos Vasquez, Juan Carlos Vázquez Sierra, Carlos Vellidis, K. Vermassen, Basile Vit, Martina Walker, Devin G.E. Wang, Xiao-Ping Watts, Gordon Xie, Si Yexley, Melissa Young, Charles Yu, Jiang-Hao Zalewski, Piotr Zhang, Yongchao |
author_facet | Alimena, Juliette Beacham, James Borsato, Martino Cheng, Yangyang Cid Vidal, Xabier Cottin, Giovanna De Roeck, Albert Desai, Nishita Curtin, David Evans, Jared A. Knapen, Simon Kraml, Sabine Lessa, Andre Liu, Zhen Mehlhase, Sascha Ramsey-Musolf, Michael J. Russell, Heather Shelton, Jessie Shuve, Brian Verducci, Monica Zurita, Jose Adams, Todd Adersberger, Michael Alpigiani, Cristiano Apresyan, Artur Bainbridge, Robert John Batozskaya, Varvara Beauchesne, Hugues Benato, Lisa Berlendis, S. Bhal, Eshwen Blekman, Freya Borovilou, Christina Boyd, Jamie Brau, Benjamin P. Bryngemark, Lene Buchmueller, Oliver Buschmann, Malte Buttinger, William Campanelli, Mario Cesarotti, Cari Chen, Chunhui Cheng, Hsin-Chia Cheong, Sanha Citron, Matthew Coccaro, Andrea Coco, V. Conte, Eric Cormier, Félix Corpe, Louie D. Craig, Nathaniel Cui, Yanou Dall'Occo, Elena Dallapiccola, C. Darwish, M.R. Davoli, Alessandro de Cosa, Annapaola De Simone, Andrea Delle Rose, Luigi Deppisch, Frank F. Dey, Biplab Diamond, Miriam D. Dienes, Keith R. Dildick, Sven Döbrich, Babette Drewes, Marco Eich, Melanie ElSawy, M. Escalante Del Valle, Alberto Facini, Gabriel Farina, Marco Feng, Jonathan L. Fischer, Oliver Flaecher, H.U. Foldenauer, Patrick Freytsis, Marat Fuks, Benjamin Galon, Iftah Gershtein, Yuri Giagu, Stefano Giammanco, Andrea Gligorov, Vladimir V. Golling, Tobias Grancagnolo, Sergio Gustavino, Giuliano Haas, Andrew Hahn, Kristian Hajer, Jan Hammad, Ahmed Heinrich, Lukas Heisig, Jan Helo, J.C. Hesketh, Gavin Hill, Christopher S. Hirsch, Martin Hohlmann, M. Hulsbergen, W. Huth, John Ilten, Philip Jacques, Thomas Jayatilaka, Bodhitha Jeng, Geng-Yuan Johns, K.A. Kaji, Toshiaki Kasieczka, Gregor Kats, Yevgeny Kazana, Malgorzata Keller, Henning Khlopov, Maxim Yu. Kling, Felix Kolberg, Ted R. Kostiuk, Igor Kuwertz, Emma Sian Kvam, Audrey Landsberg, Greg Lanfranchi, Gaia Lara, Iñaki Ledovskoy, Alexander Linthorne, Dylan Liu, Jia Longarini, Iacopo Lowette, Steven Lubatti, Henry Lutz, Margaret Luo, Jingyu Mamužić, Judita Marinangeli, Matthieu Mariotti, Alberto Marlow, Daniel McCullough, Matthew McDermott, Kevin Mermod, P. Milstead, David Mitsou, Vasiliki A. Montejo Berlingen, Javier Moortgat, Filip Morandini, Alessandro Morris, Alice Polyxeni Morse, David Michael Mrenna, Stephen Nachman, Benjamin Nemevšek, Miha Nesti, Fabrizio Ohm, Christian Pascoli, Silvia Pedro, Kevin Peña, Cristián Pena Rodriguez, Karla Josefina Piedra, Jónatan Pinfold, James L. Policicchio, Antonio Popara, Goran Prisciandaro, Jessica Proffitt, Mason Rauco, Giorgia Redi, Federico Reece, Matthew Reinsvold Hall, Allison Rejeb Sfar, H. Renner, Sophie Roepe, Amber Ronzani, Manfredi Salvioni, Ennio Santra, Arka Sawada, Ryu Scholtz, Jakub Schuster, Philip Schwaller, Pedro Sebastiani, Cristiano Sekmen, Sezen Selvaggi, Michele Si, Weinan Soffi, Livia Stolarski, Daniel Stuart, David Stupak, John Sung, Kevin Taylor, Wendy Templ, Sebastian Thomas, Brooks Torró-Pastor, Emma Trocino, Daniele Trojanowski, Sebastian Trovato, Marco Tsai, Yuhsin Tully, C.G. Vámi, Tamás Álmos Vasquez, Juan Carlos Vázquez Sierra, Carlos Vellidis, K. Vermassen, Basile Vit, Martina Walker, Devin G.E. Wang, Xiao-Ping Watts, Gordon Xie, Si Yexley, Melissa Young, Charles Yu, Jiang-Hao Zalewski, Piotr Zhang, Yongchao |
author_sort | Alimena, Juliette |
collection | CERN |
description | Particles beyond the Standard Model (SM) can generically have lifetimes that are long compared to SM particles at the weak scale. When produced at experiments such as the Large Hadron Collider (LHC) at CERN, these long-lived particles (LLPs) can decay far from the interaction vertex of the primary proton–proton collision. Such LLP signatures are distinct from those of promptly decaying particles that are targeted by the majority of searches for new physics at the LHC, often requiring customized techniques to identify, for example, significantly displaced decay vertices, tracks with atypical properties, and short track segments. Given their non-standard nature, a comprehensive overview of LLP signatures at the LHC is beneficial to ensure that possible avenues of the discovery of new physics are not overlooked. Here we report on the joint work of a community of theorists and experimentalists with the ATLAS, CMS, and LHCb experiments—as well as those working on dedicated experiments such as MoEDAL, milliQan, MATHUSLA, CODEX-b, and FASER—to survey the current state of LLP searches at the LHC, and to chart a path for the development of LLP searches into the future, both in the upcoming Run 3 and at the high-luminosity LHC. The work is organized around the current and future potential capabilities of LHC experiments to generally discover new LLPs, and takes a signature-based approach to surveying classes of models that give rise to LLPs rather than emphasizing any particular theory motivation. We develop a set of simplified models; assess the coverage of current searches; document known, often unexpected backgrounds; explore the capabilities of proposed detector upgrades; provide recommendations for the presentation of search results; and look towards the newest frontiers, namely high-multiplicity ‘dark showers’, highlighting opportunities for expanding the LHC reach for these signals. |
id | cern-2667527 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2019 |
record_format | invenio |
spelling | cern-26675272023-09-01T04:25:59Zdoi:10.1088/1361-6471/ab4574http://cds.cern.ch/record/2667527engAlimena, JulietteBeacham, JamesBorsato, MartinoCheng, YangyangCid Vidal, XabierCottin, GiovannaDe Roeck, AlbertDesai, NishitaCurtin, DavidEvans, Jared A.Knapen, SimonKraml, SabineLessa, AndreLiu, ZhenMehlhase, SaschaRamsey-Musolf, Michael J.Russell, HeatherShelton, JessieShuve, BrianVerducci, MonicaZurita, JoseAdams, ToddAdersberger, MichaelAlpigiani, CristianoApresyan, ArturBainbridge, Robert JohnBatozskaya, VarvaraBeauchesne, HuguesBenato, LisaBerlendis, S.Bhal, EshwenBlekman, FreyaBorovilou, ChristinaBoyd, JamieBrau, Benjamin P.Bryngemark, LeneBuchmueller, OliverBuschmann, MalteButtinger, WilliamCampanelli, MarioCesarotti, CariChen, ChunhuiCheng, Hsin-ChiaCheong, SanhaCitron, MatthewCoccaro, AndreaCoco, V.Conte, EricCormier, FélixCorpe, Louie D.Craig, NathanielCui, YanouDall'Occo, ElenaDallapiccola, C.Darwish, M.R.Davoli, Alessandrode Cosa, AnnapaolaDe Simone, AndreaDelle Rose, LuigiDeppisch, Frank F.Dey, BiplabDiamond, Miriam D.Dienes, Keith R.Dildick, SvenDöbrich, BabetteDrewes, MarcoEich, MelanieElSawy, M.Escalante Del Valle, AlbertoFacini, GabrielFarina, MarcoFeng, Jonathan L.Fischer, OliverFlaecher, H.U.Foldenauer, PatrickFreytsis, MaratFuks, BenjaminGalon, IftahGershtein, YuriGiagu, StefanoGiammanco, AndreaGligorov, Vladimir V.Golling, TobiasGrancagnolo, SergioGustavino, GiulianoHaas, AndrewHahn, KristianHajer, JanHammad, AhmedHeinrich, LukasHeisig, JanHelo, J.C.Hesketh, GavinHill, Christopher S.Hirsch, MartinHohlmann, M.Hulsbergen, W.Huth, JohnIlten, PhilipJacques, ThomasJayatilaka, BodhithaJeng, Geng-YuanJohns, K.A.Kaji, ToshiakiKasieczka, GregorKats, YevgenyKazana, MalgorzataKeller, HenningKhlopov, Maxim Yu.Kling, FelixKolberg, Ted R.Kostiuk, IgorKuwertz, Emma SianKvam, AudreyLandsberg, GregLanfranchi, GaiaLara, IñakiLedovskoy, AlexanderLinthorne, DylanLiu, JiaLongarini, IacopoLowette, StevenLubatti, HenryLutz, MargaretLuo, JingyuMamužić, JuditaMarinangeli, MatthieuMariotti, AlbertoMarlow, DanielMcCullough, MatthewMcDermott, KevinMermod, P.Milstead, DavidMitsou, Vasiliki A.Montejo Berlingen, JavierMoortgat, FilipMorandini, AlessandroMorris, Alice PolyxeniMorse, David MichaelMrenna, StephenNachman, BenjaminNemevšek, MihaNesti, FabrizioOhm, ChristianPascoli, SilviaPedro, KevinPeña, CristiánPena Rodriguez, Karla JosefinaPiedra, JónatanPinfold, James L.Policicchio, AntonioPopara, GoranPrisciandaro, JessicaProffitt, MasonRauco, GiorgiaRedi, FedericoReece, MatthewReinsvold Hall, AllisonRejeb Sfar, H.Renner, SophieRoepe, AmberRonzani, ManfrediSalvioni, EnnioSantra, ArkaSawada, RyuScholtz, JakubSchuster, PhilipSchwaller, PedroSebastiani, CristianoSekmen, SezenSelvaggi, MicheleSi, WeinanSoffi, LiviaStolarski, DanielStuart, DavidStupak, JohnSung, KevinTaylor, WendyTempl, SebastianThomas, BrooksTorró-Pastor, EmmaTrocino, DanieleTrojanowski, SebastianTrovato, MarcoTsai, YuhsinTully, C.G.Vámi, Tamás ÁlmosVasquez, Juan CarlosVázquez Sierra, CarlosVellidis, K.Vermassen, BasileVit, MartinaWalker, Devin G.E.Wang, Xiao-PingWatts, GordonXie, SiYexley, MelissaYoung, CharlesYu, Jiang-HaoZalewski, PiotrZhang, YongchaoSearching for long-lived particles beyond the Standard Model at the Large Hadron Colliderhep-phParticle Physics - Phenomenologyhep-exParticle Physics - ExperimentParticles beyond the Standard Model (SM) can generically have lifetimes that are long compared to SM particles at the weak scale. When produced at experiments such as the Large Hadron Collider (LHC) at CERN, these long-lived particles (LLPs) can decay far from the interaction vertex of the primary proton–proton collision. Such LLP signatures are distinct from those of promptly decaying particles that are targeted by the majority of searches for new physics at the LHC, often requiring customized techniques to identify, for example, significantly displaced decay vertices, tracks with atypical properties, and short track segments. Given their non-standard nature, a comprehensive overview of LLP signatures at the LHC is beneficial to ensure that possible avenues of the discovery of new physics are not overlooked. Here we report on the joint work of a community of theorists and experimentalists with the ATLAS, CMS, and LHCb experiments—as well as those working on dedicated experiments such as MoEDAL, milliQan, MATHUSLA, CODEX-b, and FASER—to survey the current state of LLP searches at the LHC, and to chart a path for the development of LLP searches into the future, both in the upcoming Run 3 and at the high-luminosity LHC. The work is organized around the current and future potential capabilities of LHC experiments to generally discover new LLPs, and takes a signature-based approach to surveying classes of models that give rise to LLPs rather than emphasizing any particular theory motivation. We develop a set of simplified models; assess the coverage of current searches; document known, often unexpected backgrounds; explore the capabilities of proposed detector upgrades; provide recommendations for the presentation of search results; and look towards the newest frontiers, namely high-multiplicity ‘dark showers’, highlighting opportunities for expanding the LHC reach for these signals.Particles beyond the Standard Model (SM) can generically have lifetimes that are long compared to SM particles at the weak scale. When produced at experiments such as the Large Hadron Collider (LHC) at CERN, these long-lived particles (LLPs) can decay far from the interaction vertex of the primary proton-proton collision. Such LLP signatures are distinct from those of promptly decaying particles that are targeted by the majority of searches for new physics at the LHC, often requiring customized techniques to identify, for example, significantly displaced decay vertices, tracks with atypical properties, and short track segments. Given their non-standard nature, a comprehensive overview of LLP signatures at the LHC is beneficial to ensure that possible avenues of the discovery of new physics are not overlooked. Here we report on the joint work of a community of theorists and experimentalists with the ATLAS, CMS, and LHCb experiments --- as well as those working on dedicated experiments such as MoEDAL, milliQan, MATHUSLA, CODEX-b, and FASER --- to survey the current state of LLP searches at the LHC, and to chart a path for the development of LLP searches into the future, both in the upcoming Run 3 and at the High-Luminosity LHC. The work is organized around the current and future potential capabilities of LHC experiments to generally discover new LLPs, and takes a signature-based approach to surveying classes of models that give rise to LLPs rather than emphasizing any particular theory motivation. We develop a set of simplified models; assess the coverage of current searches; document known, often unexpected backgrounds; explore the capabilities of proposed detector upgrades; provide recommendations for the presentation of search results; and look towards the newest frontiers, namely high-multiplicity "dark showers", highlighting opportunities for expanding the LHC reach for these signals.arXiv:1903.04497oai:cds.cern.ch:26675272019-03-11 |
spellingShingle | hep-ph Particle Physics - Phenomenology hep-ex Particle Physics - Experiment Alimena, Juliette Beacham, James Borsato, Martino Cheng, Yangyang Cid Vidal, Xabier Cottin, Giovanna De Roeck, Albert Desai, Nishita Curtin, David Evans, Jared A. Knapen, Simon Kraml, Sabine Lessa, Andre Liu, Zhen Mehlhase, Sascha Ramsey-Musolf, Michael J. Russell, Heather Shelton, Jessie Shuve, Brian Verducci, Monica Zurita, Jose Adams, Todd Adersberger, Michael Alpigiani, Cristiano Apresyan, Artur Bainbridge, Robert John Batozskaya, Varvara Beauchesne, Hugues Benato, Lisa Berlendis, S. Bhal, Eshwen Blekman, Freya Borovilou, Christina Boyd, Jamie Brau, Benjamin P. Bryngemark, Lene Buchmueller, Oliver Buschmann, Malte Buttinger, William Campanelli, Mario Cesarotti, Cari Chen, Chunhui Cheng, Hsin-Chia Cheong, Sanha Citron, Matthew Coccaro, Andrea Coco, V. Conte, Eric Cormier, Félix Corpe, Louie D. Craig, Nathaniel Cui, Yanou Dall'Occo, Elena Dallapiccola, C. Darwish, M.R. Davoli, Alessandro de Cosa, Annapaola De Simone, Andrea Delle Rose, Luigi Deppisch, Frank F. Dey, Biplab Diamond, Miriam D. Dienes, Keith R. Dildick, Sven Döbrich, Babette Drewes, Marco Eich, Melanie ElSawy, M. Escalante Del Valle, Alberto Facini, Gabriel Farina, Marco Feng, Jonathan L. Fischer, Oliver Flaecher, H.U. Foldenauer, Patrick Freytsis, Marat Fuks, Benjamin Galon, Iftah Gershtein, Yuri Giagu, Stefano Giammanco, Andrea Gligorov, Vladimir V. Golling, Tobias Grancagnolo, Sergio Gustavino, Giuliano Haas, Andrew Hahn, Kristian Hajer, Jan Hammad, Ahmed Heinrich, Lukas Heisig, Jan Helo, J.C. Hesketh, Gavin Hill, Christopher S. Hirsch, Martin Hohlmann, M. Hulsbergen, W. Huth, John Ilten, Philip Jacques, Thomas Jayatilaka, Bodhitha Jeng, Geng-Yuan Johns, K.A. Kaji, Toshiaki Kasieczka, Gregor Kats, Yevgeny Kazana, Malgorzata Keller, Henning Khlopov, Maxim Yu. Kling, Felix Kolberg, Ted R. Kostiuk, Igor Kuwertz, Emma Sian Kvam, Audrey Landsberg, Greg Lanfranchi, Gaia Lara, Iñaki Ledovskoy, Alexander Linthorne, Dylan Liu, Jia Longarini, Iacopo Lowette, Steven Lubatti, Henry Lutz, Margaret Luo, Jingyu Mamužić, Judita Marinangeli, Matthieu Mariotti, Alberto Marlow, Daniel McCullough, Matthew McDermott, Kevin Mermod, P. Milstead, David Mitsou, Vasiliki A. Montejo Berlingen, Javier Moortgat, Filip Morandini, Alessandro Morris, Alice Polyxeni Morse, David Michael Mrenna, Stephen Nachman, Benjamin Nemevšek, Miha Nesti, Fabrizio Ohm, Christian Pascoli, Silvia Pedro, Kevin Peña, Cristián Pena Rodriguez, Karla Josefina Piedra, Jónatan Pinfold, James L. Policicchio, Antonio Popara, Goran Prisciandaro, Jessica Proffitt, Mason Rauco, Giorgia Redi, Federico Reece, Matthew Reinsvold Hall, Allison Rejeb Sfar, H. Renner, Sophie Roepe, Amber Ronzani, Manfredi Salvioni, Ennio Santra, Arka Sawada, Ryu Scholtz, Jakub Schuster, Philip Schwaller, Pedro Sebastiani, Cristiano Sekmen, Sezen Selvaggi, Michele Si, Weinan Soffi, Livia Stolarski, Daniel Stuart, David Stupak, John Sung, Kevin Taylor, Wendy Templ, Sebastian Thomas, Brooks Torró-Pastor, Emma Trocino, Daniele Trojanowski, Sebastian Trovato, Marco Tsai, Yuhsin Tully, C.G. Vámi, Tamás Álmos Vasquez, Juan Carlos Vázquez Sierra, Carlos Vellidis, K. Vermassen, Basile Vit, Martina Walker, Devin G.E. Wang, Xiao-Ping Watts, Gordon Xie, Si Yexley, Melissa Young, Charles Yu, Jiang-Hao Zalewski, Piotr Zhang, Yongchao Searching for long-lived particles beyond the Standard Model at the Large Hadron Collider |
title | Searching for long-lived particles beyond the Standard Model at the Large Hadron Collider |
title_full | Searching for long-lived particles beyond the Standard Model at the Large Hadron Collider |
title_fullStr | Searching for long-lived particles beyond the Standard Model at the Large Hadron Collider |
title_full_unstemmed | Searching for long-lived particles beyond the Standard Model at the Large Hadron Collider |
title_short | Searching for long-lived particles beyond the Standard Model at the Large Hadron Collider |
title_sort | searching for long-lived particles beyond the standard model at the large hadron collider |
topic | hep-ph Particle Physics - Phenomenology hep-ex Particle Physics - Experiment |
url | https://dx.doi.org/10.1088/1361-6471/ab4574 http://cds.cern.ch/record/2667527 |
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