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Thermal meson properties within Chiral Perturbation Theory

dc.contributor.authorGómez Nicola, Ángel
dc.contributor.authorDobado González, Antonio
dc.contributor.authorLlanes Estrada, Felipe José
dc.date.accessioned2023-06-20T18:47:27Z
dc.date.available2023-06-20T18:47:27Z
dc.date.issued2003
dc.description©2003 American Institute of Physics 0-7354-0120-9/03/S20.00. International Workshop on Hadron Physics (2 . 2002. Coimbra, Portugal). Hadron Physics: effective theories of low energy QCD A.G.N and J.R.P wish to thank the organizers of the "2nd International Workshop on Hadron Physics" for their kind invitation. We acknowledge financial support from the Spanish CICYT projects, FPA2000-0956, PB98-0782 and BFM2000-1326. This work was supported in part by the Director, Office of Science, Office of High Energy and Nuclear Physics of the U.S. Department of Energy under Contract DE-AC03-76SF00098. J.R.P. acknowledges support from the CICYT-INFN collaboration grant 003P 640.15. A.D. acknowledges support from the Universidad Complutense del Amo Program. Eqns.(4)-(7) and Fig.4 are reprinted from "Finite-temperature pion scattering to one loop in chiral perturbation theory" [18] with permission from Elsevier Science.
dc.description.abstractWe report on our recent work about the description of a meson gas below the chiral phase transition within the framework of Chiral Perturbation Theory. As an alternative to the standard treatment, we present a calculation of the quark condensate which combines the virial expansion and the meson-meson scattering data. We have also calculated the full one-loop elastic pion scattering amplitude at finite temperature and we have unitarized the amplitude using the Inverse Amplitude Method in order to reproduce the temperature effects on the mass and width of the p and a resonances. Our results show a clear increase of the thermal p width, as expected from previous analysis. The results for the a are consistent with Chiral Symmetry Restoration. We comment on the relevance of our results within the context of Relativistic Heavy Ion Collisions.
dc.description.departmentDepto. de Física Teórica
dc.description.facultyFac. de Ciencias Físicas
dc.description.refereedTRUE
dc.description.sponsorshipOffice of Science, Office of High Energy and Nuclear Physics of the U.S. Department of Energy
dc.description.sponsorshipSpanish CICYT
dc.description.sponsorshipUniversidad Complutense del Amo Program
dc.description.sponsorshipCICYT-INFN
dc.description.statuspub
dc.eprint.idhttps://eprints.ucm.es/id/eprint/22159
dc.identifier.issn0094-243X
dc.identifier.officialurlhttp://dx.doi.org/10.1063/1.1570568
dc.identifier.relatedurlhttp://www.aip.org
dc.identifier.relatedurlhttp://arxiv.org/abs/hep-ph/0212121
dc.identifier.urihttps://hdl.handle.net/20.500.14352/58625
dc.journal.titleAIP Conference Proceedings
dc.language.isoeng
dc.page.final159
dc.page.initial156
dc.publisherAmerican Institute of Physics
dc.relation.projectID003P 640.15
dc.relation.projectIDFPA2000-0956
dc.relation.projectIDPB98-0782
dc.relation.projectIDBFM2000-1326
dc.relation.projectIDBFM2000-1326
dc.relation.projectIDDE-AC03-76SF00098
dc.relation.projectID76SF00098
dc.rights.accessRightsopen access
dc.subject.cdu53
dc.subject.keywordLinear Sigma-Model
dc.subject.keywordBethe-Salpeter Approach
dc.subject.keywordPi-Pi-Scattering
dc.subject.keywordTemperature Field-Theory
dc.subject.keywordQcd Phase-Transition
dc.subject.keywordHeavy-Ion Collisions
dc.subject.keywordLow-Mass Dileptons
dc.subject.keywordArt. No. 076001
dc.subject.keywordFinite-Temperature
dc.subject.keywordRho-Meson
dc.subject.ucmFísica (Física)
dc.subject.unesco22 Física
dc.titleThermal meson properties within Chiral Perturbation Theory
dc.typejournal article
dc.volume.number660
dcterms.references1. HELIOS-3 collaboration,Nucl. Phys. 590, 127c (1995); CERES (NA45) Collaboration,Nucl. Phys. A661, 23c (1999). 2. Dey, M., Eletsky, V.L. and Ioffe, B.L.Phys. Lett. B252, 620 (1990); Gale, C. and Kapusta, J.I.Nucl. Phys. B357, 65 (1991). 3. Dominguez, C.A., Loewe, M. and Rojas, J.C. Z. Phys. C 59, 63 (1993). 4. Pisarski, R.D. Phys. Rev. D 52, 3773 (1995);Nucl. Phys. A 590, 553c (1995). 5. Haglin, K. Nucl. Phys. A584, 719 (1995). 6. Li, G.Q., Ko, C.M. and Brown, G.E., Phys. Rev. Lett. 75, 4007 (1995); Ko, C.M., Li, G.Q, Brown, G.E. and Sorge, H.,Nucl. Phys. A610, 342c (1996). 7. Song, C. and Koch, V. Phys. Rev. C54 3218 (1996). 8. Eletsky, V.L., Belkacem, M., Ellis, P.J. and Kapusta, J.I. Phys. Rev. C64, 035202 (2001). 9. He, Y.B., Hüfner, J., Klevansky, S.P. and Rehberg, P. Nucl. Phys. A630, 719 (1998). 10. Weinberg, S. Physica A96, 327 (1979). 11. Gasser, J. and Leutwyler, H. Ann.Phys.(N.Y.) 158, 142 (1984). 12. Gasser, J. and Leutwyler, H.,Nucl. Phys. B250, 465 (1985). 13. Meissner, U.G., Rep.Prog.Phys. 56, 903 (1993); Pich, A., Rep.Prog.Phys. 58, 563 (1995); Dobado, A., Gómez Nicola, A., Maroto, A.L. and Peláez, J.R.,Effective Lagrangians for the Standard Model, Springer-Verlag, Berlin, 1997. 14. Truong, T.N. Phys. Rev. Lett. 61, 2526 (1988); Phys. Rev. Lett. 67, 2260 (1991); Dobado, A., Herrero, M.J. and Truong, T.N., Phys. Lett. B235, 134 (1990); Dobado, A. and Peláez, J.R. Phys. Rev. D47, 4883 (1993);Phys. Rev. D56, 3057 (1997). 15. Oller, J.A. and Oset, E., Nucl. Phys. A620, 438 (1997); Nieves, J. and Ruiz Arriola, E., Phys. Lett. B455, 30 (1999);Nucl. Phys. A679, 57 (2000);Phys. Rev. D63, 076001 (2001). 16. Oller, J.A., Oset, E. and Peláez, J.R., Phys. Rev. Lett. 80, 3452 (1998); Phys. Rev. D59, 074001 (1999); 60, 99906(E) (1999). Guerrero, F. and Oller, J.A., Nucl. Phys. B537, 459 (1999); Nucl. Phys. B602 641 (E). 17. Gómez Nicola, A. and Peláez, J.R., Phys. Rev. D65, 054009 (2002). 18. Gómez Nicola, A., LLanes-Estrada, F.J. and Peláez, J.R., Phys. Lett. B550, 55-64 (2002). 19. Dobado, A., Gómez Nicola, A., LLanes-Estrada, F.J. and Peláez, J.R. Phys. Rev. C66, 055201 (2002). 20. Gasser, J. and Leutwyler, H., Phys. Lett. B184, 83 (1987). 21. Gerber, P. and Leutwyler, H.,Nucl. Phys. B321, 387 (1989). 22. Pisarski, R.D. and Tytgat, M. Phys. Rev. D54, 2989 (1996); Toublan, D. Phys. Rev. D56, 5629 (1997); Martinez Resco, J.M. and Valle Basagoiti, M.A., Phys. Rev. D58, 097901 (1998) 23. Goity, J.L. and Leutwyler, H., Phys. Lett. B228, 517 (1989). 24. Schenk, A., Phys. Rev. D47, 5138 (1993). 25. Gómez Nicola, A., Phys. Rev. D 64, 016011 (2001); Gómez Nicola, A. and Galan-González, V., Phys. Lett. B449, 288 (1999). 26. Pisarski, R.D. and Wilczek, F., Phys. Rev. D29, 338 (1984); Rajagopal, K. and Wilczek, F., Nucl. Phys. B399, 395 (1993); Bochkarev, A. and Kapusta, J.I, Phys. Rev. D54, 4066 (1996); AmelinoCamelia, G., Phys. Lett. B407, 268 (1997); Petropoulos, N., J.Phys.G25, 2225 (1999); Nemoto, Y., Naito, K. and Oka,M., Eur.Phys.J.A9, 245 (2000); Ayala, A. and Sahu, S. Phys. Rev. D 62, 056007 (2000). 27. Chiku, S. and Hatsuda, T., Phys. Rev. D57, R6 (1998),Phys. Rev. D58, 076001 (1998). 28. Le Bellac, M., Thermal Field Theory, Cambridge University Press, London, 1996. 29. Dobado, A. and Peláez, J.R., Phys. Rev. D59, 034004 (1999). 30. Peláez, J.R., Phys. Rev. D66, 096007 (2002). 31. Dashen, R., Ma, S., Bernstein, H.J., Phys. Rev. 187, 345 (1969). 32. Karsch, F., Peikert, A. and Laermann, E.,Nucl. Phys. B605, 579 (2001). 33. Quack, E., Zhuang, P., Kalinovsky,Y., Klevansky, S.P. and Hufner,J.,Phys. Lett. B348, 1 (1995). 34. Kaiser, N., Phys. Rev. C59, 2945 (1999). 35. Baier, R. and Niégawa, A. Phys. Rev. D49, 4107 (1994). 36. Kobes,R.Phys. Rev. D42, 562 (1990); D43 , 1269 (1991). 37. Weldon, H.A. Phys. Rev. D28, 2007 (1983);Ann.Phys. (N.Y.) 214, 152 (1992). 38. Donoghue, J.F., Ramirez, C. and Valencia, G., Phys. Rev. D39, 1947 (1989); Ecker, G., Gasser, J., Pich. A. and de Rafael, E.,Nucl. Phys. B321, 311 (1989). 39. Yokokawa, K., Hatsuda, T., Hayashigaki, A. and Kunihiro,T.,Phys. Rev. C66, 022201 (2002). 40. Broniowski, W., Florkowski, W. and Hiller, B., Nucl. Phys. A696 870 (2001).
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