Study of the doubly charmed tetraquark $${{{{{{\rm{T}}}}}}}_{{{{{{\rm{c}}}}}}{{{{{\rm{c}}}}}}}^{+}$$

التفاصيل البيبلوغرافية
العنوان: Study of the doubly charmed tetraquark $${{{{{{\rm{T}}}}}}}_{{{{{{\rm{c}}}}}}{{{{{\rm{c}}}}}}}^{+}$$
المؤلفون: Imanol Corredoira, Barak Raimond Gruberg Cazon, Tommaso Pajero, Matteo Barbetti, Oliver Lantwin, Patrick Koppenburg, Joao Coelho, Lesya Shchutska, Sheldon Stone, Niladribihari Sahoo, Jana Crkovska, Eluned Smith, Marina Artuso, Maurizio Martinelli, Olaf Steinkamp, Cristina Sánchez Gras, Agnieszka Oblakowska-Mucha, Vladimir Chulikov, Ivan Belyaev, Gary Robertson, Marcos Romero Lamas, Victor Egorychev, Konrad Klimaszewski, Michela Garau, Elena Graverini, Mariusz Witek, Federico Betti, Ming Zeng, Asier Pereiro Castro, Alexandru Tudor Grecu, Patrick Haworth Owen, Michał Mazurek, Alexander Bitadze, Sergey Filippov, Olivier Schneider, Jinlin Fu, Matteo Giovannetti, Paula Alvarez Cartelle, Matthew Kenzie, Kristof De Bruyn, Zhenwei Yang, Mateusz Kmieć, Ramón Ángel Ruiz Fernández, George Lovell, Nigel Watson, Victor Coco, Anton Poluektov, Christoph Frei, Murilo Rangel, Mick Mulder, Vitalii Lisovskyi, Giovanni Punzi, Oscar Boente Garcia, Maxime Schubiger, Fernando Martinez Vidal, Claudio Gotti, Hengne Li, Abraham Antonio Gallas Torreira, Marek Idzik, Andrii Usachov, Efrén Rodríguez Rodríguez, Felipe García, Frédéric Blanc, Igor Slazyk, Youhua Yang, Tom Hadavizadeh, Mark Tobin, Eduardo Rodrigues, Martino Borsato, Alexander Bondar, Thomas Latham, Claudia Patrignani, Tara Shears, Tomasz Fiutowski, Mark Williams, Miriam Calvo Gomez, Lucas Meyer Garcia, Miroslaw Firlej, Xabier Cid Vidal, Holger Stevens, Luis Miguel Garcia Martin, Tomasz Szumlak, Guido Haefeli, Ina Carli, Méril Reboud, Ulrik Egede, Alessandro Bertolin, Igor Gorelov, Jakub Moron, Bartłomiej Rachwał, Michael Schmelling, Federico Redi, Oliver Lupton, Lingyun Dai, Saverio Mariani, Kimberley Keri Vos, Jacco De Vries, Igor Kostiuk, Lakshan Ram Madhan Mohan, Sevda Esen, George Lafferty, Davide Brundu, Serena Maccolini, Konstantin Belous, Dominik Stefan Mitzel, Maciej Majewski, Pawel Kopciewicz, Gerco Onderwater, Mara Soares, Alexander Inglessi, Lorenzo Capriotti, Olivier Deschamps, Eleonora Luppi, Wojciech Krzemien, Srishti Bhasin, Simone Bifani, Giovanni Cavallero, Tadeusz Lesiak, Maria Vieites Diaz, Suzanne Klaver, Daniel Craik, Laurent Dufour, Arantza Oyanguren, Naomi Cooke, Stefano Perazzini, Mauro Piccini, Wojciech Krupa, Raul Iraq Rabadan Trejo
المصدر: Nature Communications. 13
بيانات النشر: Springer Science and Business Media LLC, 2022.
سنة النشر: 2022
مصطلحات موضوعية: Multidisciplinary, General Physics and Astronomy, General Chemistry, General Biochemistry, Genetics and Molecular Biology
الوصف: Quantum chromodynamics, the theory of the strong force, describes interactions of coloured quarks and gluons and the formation of hadronic matter. Conventional hadronic matter consists of baryons and mesons made of three quarks and quark-antiquark pairs, respectively. Particles with an alternative quark content are known as exotic states. Here a study is reported of an exotic narrow state in the D0D0π+ mass spectrum just below the D*+D0 mass threshold produced in proton-proton collisions collected with the LHCb detector at the Large Hadron Collider. The state is consistent with the ground isoscalar $${{{{{{\rm{T}}}}}}}_{{{{{{\rm{c}}}}}}{{{{{\rm{c}}}}}}}^{+}$$ T c c + tetraquark with a quark content of $${{{{{\rm{c}}}}}}{{{{{\rm{c}}}}}}\overline{{{{{{\rm{u}}}}}}}\overline{{{{{{\rm{d}}}}}}}$$ c c u ¯ d ¯ and spin-parity quantum numbers JP = 1+. Study of the DD mass spectra disfavours interpretation of the resonance as the isovector state. The decay structure via intermediate off-shell D*+ mesons is consistent with the observed D0π+ mass distribution. To analyse the mass of the resonance and its coupling to the D*D system, a dedicated model is developed under the assumption of an isoscalar axial-vector $${{{{{{\rm{T}}}}}}}_{{{{{{\rm{c}}}}}}{{{{{\rm{c}}}}}}}^{+}$$ T c c + state decaying to the D*D channel. Using this model, resonance parameters including the pole position, scattering length, effective range and compositeness are determined to reveal important information about the nature of the $${{{{{{\rm{T}}}}}}}_{{{{{{\rm{c}}}}}}{{{{{\rm{c}}}}}}}^{+}$$ T c c + state. In addition, an unexpected dependence of the production rate on track multiplicity is observed.
تدمد: 2041-1723
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_________::d3151c80e486f3f7ae9c8cf23da8e94eTest
https://doi.org/10.1038/s41467-022-30206-wTest
حقوق: OPEN
رقم الانضمام: edsair.doi...........d3151c80e486f3f7ae9c8cf23da8e94e
قاعدة البيانات: OpenAIRE