Aviso: por motivos de mantenimiento y mejora del repositorio, mañana martes día 13 de mayo, entre las 9 y las 14 horas, Docta Complutense, no funcionará con normalidad. Disculpen las molestias.
 

Production Cross-Section Estimates for Strongly-Interacting Electroweak-Symmetry Breaking Sector Resonances at Particle Colliders

dc.contributor.authorDobado González, Antonio
dc.contributor.authorGuo, Feng-Kuo
dc.contributor.authorLlanes Estrada, Felipe José
dc.date.accessioned2023-06-18T06:51:27Z
dc.date.available2023-06-18T06:51:27Z
dc.date.issued2015-12-01
dc.descriptionWe warmly thank intense discussions and information exchange with J. J. Sanz Cillero and D. Espriu. We are grateful to U.-G. Meißner for a careful reading of the manuscript. This work is partially supported by the Spanish Excellence Network on Hadronic Physics FIS2014-57026-REDT, by grants UCM:910309, MINECO:FPA2011-27853-C02-01, MINECO:FPA2014-53375-C2-1-P, by DFG and NSFC through funds provided to the Sino-German CRC 110 “Symmetries and the Emergence of Structure in QCD” (NSFC Grant No. 11261130311) and by NSFC (Grant No. 11165005).
dc.description.abstractWe are exploring a generic strongly-interacting Electroweak Symmetry Breaking Sector (EWSBS) with the low-energy effective field theory for the four experimentally known particles (W_L^±, Z_L, h) and its dispersion-relation based unitary extension. In this contribution we provide simple estimates for the production cross-section of pairs of the EWSBS bosons and their resonances at proton-proton colliders as well as in a future e^−e^+ (or potentially a μ^−μ^+) collider with a typical few-TeV energy. We examine the simplest production mechanisms, tree-level production through a W (dominant when quantum numbers allow) and the simple effective boson approximation (in which the electroweak bosons are considered as collinear partons of the colliding fermions). We exemplify with custodial isovector and isotensor resonances at 2 TeV, the energy currently being discussed because of a slight excess in the ATLAS 2-jet data. We find it hard, though not unthinkable, to ascribe this excess to one of these W_LW_L rescattering resonances. An isovector resonance could be produced at a rate smaller than, but close to earlier CMS exclusion bounds, depending on the parameters of the effective theory. The ZZ excess is then problematic and requires additional physics (such as an additional scalar resonance). The isotensor one (that would describe all charge combinations) has smaller cross-section.
dc.description.departmentDepto. de Física Teórica
dc.description.facultyFac. de Ciencias Físicas
dc.description.refereedTRUE
dc.description.sponsorshipMinisterio de Economía y Competitividad (MINECO)
dc.description.sponsorshipSpanish Excellence Network on Hadronic Physics (HADROnet)
dc.description.sponsorshipUniversidad Complutense de Madrid (UCM)
dc.description.sponsorshipNational Natural Science Foundation of China (NSFC)
dc.description.sponsorshipFundación Alemana para la Investigación Científica (DFG)
dc.description.statuspub
dc.eprint.idhttps://eprints.ucm.es/id/eprint/37089
dc.identifier.doi10.1088/0253-6102/64/6/701
dc.identifier.issn0253-6102
dc.identifier.officialurlhttp://dx.doi.org/10.1088/0253-6102/64/6/701
dc.identifier.relatedurlhttp://iopscience.iop.org/
dc.identifier.relatedurlhttp://www.arxiv.org
dc.identifier.urihttps://hdl.handle.net/20.500.14352/24416
dc.issue.number6
dc.journal.titleCommunicaions in theoretical physics
dc.language.isoeng
dc.page.final709
dc.page.initial701
dc.publisherIOP PUBLISHING LTD
dc.relation.projectIDFIS2014-57026-REDT
dc.relation.projectIDFPA2011-27853-C02-01
dc.relation.projectIDFPA2014-53375-C2-1-P
dc.relation.projectIDNSFC (11261130311)
dc.relation.projectIDNSFC (11165005)
dc.relation.projectIDUCM (910309)
dc.rights.accessRightsopen access
dc.subject.cdu53
dc.subject.keywordStrongly interacting electroweak symmetry breaking sector
dc.subject.keywordElectroweak resonances
dc.subject.keywordATLAS diboson excess
dc.subject.keywordUnitarized electroweak chiral Lagrangian.
dc.subject.ucmFísica (Física)
dc.subject.unesco22 Física
dc.titleProduction Cross-Section Estimates for Strongly-Interacting Electroweak-Symmetry Breaking Sector Resonances at Particle Colliders
dc.typejournal article
dc.volume.number64
dcterms.references[1] R. L. Delgado, A. Dobado and F. J. Llanes-Estrada, Phys. Rev. Lett. 114, 221803 (2015) [arXiv:1408.1193 [hep-ph]]; R. L. Delgado, A. Dobado and F. J. Llanes-Estrada, Phys. Rev. D 91, 075017 (2015) [arXiv:1502.04841 [hep-ph]]. [2] R. L. Delgado, A. Dobado and F. J. Llanes-Estrada, J. Phys. G 41, 025002 (2014) [arXiv:1308.1629 [hep-ph]]; R. L. Delgado, A. Dobado and F. J. Llanes-Estrada, JHEP 1402, 121 (2014) [arXiv:1311.5993 [hep-ph]]; R. L. Delgado, A. Dobado, M. J. Herrero and J. J. Sanz- Cillero, JHEP 1407, 149 (2014) [arXiv:1404.2866 [hep-ph]]. [3] R. Alonso, I. Brivio, B. Gavela, L. Merlo and S. Rigolin, JHEP 1412, 034 (2014) [arXiv:1409.1589 [hep-ph]]. [4] W. Kilian, T. Ohl, J. Reuter and M. Sekulla, Phys. Rev. D 91, 096007 (2015) [arXiv:1408.6207 [hep-ph]]. [5] G. Buchalla, O. Cata, A. Celis and C. Krause, arXiv:1504.01707 [hep-ph]. [6] J. M. Cornwall, D. N. Levin and G. Tiktopoulos, Phys. Rev. D 10, 1145 (1974) [Phys. Rev. D 11, 972 (1975)]; C. E. Vayonakis, Lett. Nuovo Cim. 17, 383 (1976); M.S. Chanowitz and M.K. Gaillard, Nucl. Phys. 261, 379 (1985); G.J. Gounaris, R. Kogerler and H. Neufeld, Phys. Rev. D 34, 3257 (1986). [7] A. Dobado J. R. Peláez Nucl. Phys. B425, 110 (1994); Phys. Lett. B 329, 469 (1994) (Addendum, ibid, B335, 554 (1994); C. Grosse-Knetter and I.Kuss, Z. Phys. C 66, 95 (1995); H. J. He, Y. P. Kuang and X. Li, Phys. Lett. B 329, 278 (1994). [8] G. Aad et al. [ATLAS Collaboration], arXiv:1506.00962 [hep-ex]. 14 [9] D. Espriu and F. Mescia, Phys. Rev. D 90, 015035 (2014) [arXiv:1403.7386 [hep-ph]]; D. Espriu, F. Mescia and B. Yencho, Phys. Rev. D 88, 055002 (2013) [arXiv:1307.2400 [hep-ph]]; D. Espriu and B. Yencho, Phys. Rev. D 87, 055017 (2013) [arXiv:1212.4158 [hep-ph]]. [10] T. N. Truong, Phys. Rev. Lett. 61, 2526 (1988). [11] A. Dobado, M. J. Herrero and T. N. Truong, Phys. Lett. B 235, 134 (1990); A. Dobado and J.R. Peláez, Phys. Rev. D 47, 4883 (1993); Phys. Rev. D 56, 3057 (1997). [12] P. Arnan, D. Espriu and F. Mescia, arXiv:1508.00174 [hep-ph]. [13] V. Khachatryan et al. [CMS Collaboration], JHEP 1408, 173 (2014) [arXiv:1405.1994 [hep-ex]]. [14] S. Dawson, Nucl. Phys. B 249, 42 (1985). [15] A. Dobado and M. J. Herrero, Phys. Lett. B 233, 505 (1989). [16] J. F. Owens, A. Accardi and W.Melnitchouk, Phys. Rev. D 87, 094012 (2013) [arXiv:1212.1702 [hep-ph]]. [17] A. Dobado, M. J. Herrero, J. R. Peláez and E. Ruiz Morales, Phys. Rev. D 62, 055011 (2000) [hep-ph/9912224]. [18] K. A. Olive et al. [Particle Data Group], Chin. Phys. C 38, 090001 (2014). [19] W. J. Marciano, AIP Conf. Proc. 542, 48 (2000) [hep-ph/0003181]. [20] The ATLAS collaboration [ATLAS Collaboration], ATLAS-CONF-2014-009, ATLAS-COMCONF- 2014-013; also the CMS Collaboration report CMSPASHIG-14-009. [21] D. Barducci, H. Cai, S. De Curtis, F. J. Llanes-Estrada and S. Moretti, Phys. Rev. D 91, 095013 (2015) [arXiv:1501.01830 [hep-ph]]. [22] J. A. Aguilar-Saavedra, arXiv:1506.06739 [hep-ph]. [23] M. Ahmad et al. [CEPC-SPPC Study Group], CEPC-SPPC Preliminary Conceptual Design Report, IHEP-CEPC-DR-2015-01. [24] A. Gomez Nicola, J. R. Peláez and G. R´ıos, Phys. Rev. D 77, 056006 (2008) [arXiv:0712.2763 [hep-ph]]. [25] K. M. Watson, Phys. Rev. 88, 1163 (1952).
dspace.entity.typePublication
relation.isAuthorOfPublication16523fad-99a9-422c-9a8e-c949ccffadec
relation.isAuthorOfPublication6290fe55-04e6-4532-91e6-1df735bdbdca
relation.isAuthorOfPublication.latestForDiscovery16523fad-99a9-422c-9a8e-c949ccffadec

Download

Original bundle

Now showing 1 - 1 of 1
Loading...
Thumbnail Image
Name:
DobadoA113preprint.pdf
Size:
352.02 KB
Format:
Adobe Portable Document Format

Collections