Vector meson production in ultraperipheral collisions at the LHC
Teoretičeskaâ i matematičeskaâ fizika, Tome 182 (2015) no. 1, pp. 171-181 Cet article a éte moissonné depuis la source Math-Net.Ru

Voir la notice de l'article

Using a Regge-pole model for vector meson production (VMP) that successfully describes the HERA data, we analyze the correlation between VMP cross sections in photon-induced reactions at HERA and those in ultraperipheral collisions at the large hadron collider. We obtain predictions for future experiments on the production of $J/\psi$ and other vector mesons.
Keywords: vector meson, collider, HERA, large hadron collider
Mots-clés : pomeron.
@article{TMF_2015_182_1_a10,
     author = {R. Fiore and L. L. Enkovskii and V. Libov and M. V. Machado},
     title = {Vector meson production in ultraperipheral collisions at {the~LHC}},
     journal = {Teoreti\v{c}eska\^a i matemati\v{c}eska\^a fizika},
     pages = {171--181},
     year = {2015},
     volume = {182},
     number = {1},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/TMF_2015_182_1_a10/}
}
TY  - JOUR
AU  - R. Fiore
AU  - L. L. Enkovskii
AU  - V. Libov
AU  - M. V. Machado
TI  - Vector meson production in ultraperipheral collisions at the LHC
JO  - Teoretičeskaâ i matematičeskaâ fizika
PY  - 2015
SP  - 171
EP  - 181
VL  - 182
IS  - 1
UR  - http://geodesic.mathdoc.fr/item/TMF_2015_182_1_a10/
LA  - ru
ID  - TMF_2015_182_1_a10
ER  - 
%0 Journal Article
%A R. Fiore
%A L. L. Enkovskii
%A V. Libov
%A M. V. Machado
%T Vector meson production in ultraperipheral collisions at the LHC
%J Teoretičeskaâ i matematičeskaâ fizika
%D 2015
%P 171-181
%V 182
%N 1
%U http://geodesic.mathdoc.fr/item/TMF_2015_182_1_a10/
%G ru
%F TMF_2015_182_1_a10
R. Fiore; L. L. Enkovskii; V. Libov; M. V. Machado. Vector meson production in ultraperipheral collisions at the LHC. Teoretičeskaâ i matematičeskaâ fizika, Tome 182 (2015) no. 1, pp. 171-181. http://geodesic.mathdoc.fr/item/TMF_2015_182_1_a10/

[1] R. Aaij, C. Abellan Beteta, A. Adametz et al. [LHCb Collaboration], J. Phys. G: Nucl. Part. Phys., 40:4 (2013), 045001, 18 pp., arXiv: 1301.7084 | DOI

[2] R. Aaij, B. Adeva, M. Adinolfi et al. [LHCb Collaboration], J. Phys. G: Nucl. Part. Phys., 41:5 (2014), 055002, 21 pp., arXiv: 1401.3288 | DOI

[3] A. Schäfer, L. Mankiewicz, O. Nachtmann, Phys. Lett. B, 272:3–4 (1991), 419–424 | DOI

[4] V. P. Gonçalves, M. M. Machado, Heavy quark production in photon-Pomeron interactions at hadronic colliders, arXiv: ; Quarkonium$+\gamma$ production in coherent hadron-hadron interactions at LHC energies, arXiv: ; Phys. Rev. C, 84:1 (2011), 011902, 4 pp., arXiv: ; Phys. Rev. C, 80:5 (2009), 054901, 6 pp., arXiv: ; V. P. Gonçalves, W. K. Sauter, Diffractive vector meson production at large-$t$ in coherent hadronic interactions at CERN LHC, arXiv: ; V. P. Gonçalves, Probing the Odderon in coherent hadron-hadron interactions at CERN LHC, arXiv: ; M. B. Gay Ducati, M. T. Griep, M. V. T. Machado, Phys. Rev. D, 88:1 (2013), 017504, 5 pp., arXiv: ; G. Sampaio dos Santos, M. V. T. Machado, Light vector meson photoproduction in hadron-hadron and nucleus-nucleus collisions at the energies available at the CERN Large Hadron Collider, arXiv: 1112.35001207.52731106.30360907.41231004.19521211.12071305.46111407.4148 | DOI | MR | DOI | DOI

[5] V. A. Khoze, A. D. Martin, M. G. Ryskin, Eur. Phys. J. C, 24:3 (2002), 459–468, arXiv: ; S. P. Jones, A. D. Martin, M. G. Ryskin, T. Teubner, Probes of the small $x$ gluon via exclusive $J/\psi$ and $\Upsilon$ production at HERA and the LHC, arXiv: ; Predictions of exclusive $\psi(2S)$ production at the LHC, arXiv: hep-ph/02013011307.70991312.6795 | DOI

[6] A. Bzdak, L. Motyka, L. Szymanowski, J.-R. Cudell, Phys. Rev. D, 75:9 (2007), 094023, 12 pp., arXiv: ; L. Motyka, G. Watt, Phys. Rev. D, 78:1 (2008), 014023, 13 pp., arXiv: hep-ph/07021340805.2113 | DOI | DOI

[7] W. Schäfer, A. Szczurek, Phys. Rev. D, 76:9 (2007), 094014, 13 pp., arXiv: ; W. Schäfer, G. Slipek, A. Szczurek, Phys. Lett. B, 688:2–3 (2010), 185–191, arXiv: 0705.28871003.0610 | DOI | DOI

[8] G. Baur, K. Hencken, D. Trautmann, S. Sadovsky, Y. Kharlov, Phys. Rept., 364:5 (2002), 359–450, arXiv: ; A. J. Baltz, G. Baur, D. d'Enterria, L. Frankfurt, F. Gelis, V. Guzey, K. Hencken, Yu. Kharlov, M. Klasen, S. R. Klein, V. Nikulin, J. Nystrand, I. A. Pshenichnov, S. Sadovsky, E. Scapparone, J. Seger, M. Strikman, M. Tverskoy, R. Vogt, S. N. White, U. A. Wiedemann, P. Yepes, M. Zhalov, Phys. Rept., 458:1–3 (2008), 1–171, arXiv: hep-ph/01122110706.3356 | DOI | DOI

[9] S. Fazio, R. Fiore, L. Jenkovszky, A. Salii, Acta Phys. Polonica B, 44:6 (2013), 1333–1353, arXiv: 1304.1891 | DOI

[10] S. Fazio, R. Fiore, L. Jenkovszky, A. Salii, Phys. Rev. D, 90:1 (2014), 016007, 15 pp., arXiv: 1312.5683 | DOI

[11] A. Donnachie, P. Landshoff, Phys. Lett. B, 296:1–2 (1992), 227–232, arXiv: hep-ph/9209205 | DOI

[12] M. Capua, S. Fazio, R. Fiore, L. Jenkovszky, F. Paccanoni, Phys. Lett. B, 645:2–3 (1997), 161–166, arXiv: hep-ph/0605319 | DOI