English

Transverse Extension of Partons in the Proton probed by Deeply Virtual Compton Scattering

High Energy Physics - Experiment 2019-12-12 v2 Nuclear Experiment

Abstract

We report on the first measurement of exclusive single-photon muoproduction on the proton by COMPASS using 160 GeV/cc polarized μ+\mu^+ and μ\mu^- beams of the CERN SPS impinging on a liquid hydrogen target. We determine the dependence of the average of the measured μ+\mu^+ and μ\mu^- cross sections for deeply virtual Compton scattering on the squared four-momentum transfer tt from the initial to the final final proton. The slope BB of the tt-dependence is fitted with a single exponential function, which yields B=(4.3 ± 0.6stat_ 0.3+ 0.1sys)(GeV/c)2B=(4.3 \ \pm \ 0.6_{\text{stat}}\_{- \ 0.3}^{+ \ 0.1}\big\rvert_{\text{sys}}) (\text{GeV}/c)^{-2}. This result can be converted into an average transverse extension of partons in the proton, r2=(0.58 ± 0.04stat_ 0.02+ 0.01sys)fm\sqrt{\langle r_{\perp}^2 \rangle} = (0.58 \ \pm \ 0.04_{\text{stat}}\_{- \ 0.02}^{+ \ 0.01}\big\rvert_{\text{sys}})\text{fm}. For this measurement, the average virtuality of the photon mediating the interaction is Q2=1.8(GeV/c)2\langle Q^2 \rangle = 1.8\,(\text{GeV/}c)^2 and the average value of the Bjorken variable is xBj=0.056\langle x_{\text{Bj}} \rangle = 0.056.

Keywords

Cite

@article{arxiv.1802.02739,
  title  = {Transverse Extension of Partons in the Proton probed by Deeply Virtual Compton Scattering},
  author = {R. Akhunzyanov and M. G. Alexeev and G. D. Alexeev and A. Amoroso and V. Andrieux and N. V. Anfimov and V. Anosov and A. Antoshkin and K. Augsten and W. Augustyniak and A. Austregesilo and C. D. R. Azevedo and B. Badelek and F. Balestra and M. Ball and J. Barth and R. Beck and Y. Bedfer and J. Bernhard and K. Bicker and E. R. Bielert and R. Birsa and M. Bodlak and P. Bordalo and F. Bradamante and A. Bressan and M. Buechele and E. Burtin and V. E. Burtsev and W. -C. Chang and C. Chatterjee and M. Chiosso and I. Choi and A. G. Chumakov and S. -U. Chung and A. Cicuttin and M. L. Crespo and S. Dalla Torre and S. S. Dasgupta and S. Dasgupta and O. Yu. Denisov and L. Dhara and S. V. Donskov and N. Doshita and Ch. Dreisbach and W. Duennweber and R. R. Dusaev and M. Dziewiecki and A. Efremov and P. D. Eversheim and M. Faessler and A. Ferrero and M. Finger and M. Finger and H. Fischer and C. Franco and N. du Fresne von Hohenesche and J. M. Friedrich and V. Frolov and E. Fuchey and F. Gautheron and O. P. Gavrichtchouk and S. Gerassimov and J. Giarra and I. Gnesi and M. Gorzellik and A. Grasso and A. Gridin and M. Grosse Perdekamp and B. Grube and T. Grussenmeyer and A. Guskov and D. Hahne and G. Hamar and D. von Harrach and R. Heitz and F. Herrmann and N. Horikawa and N. d'Hose and C. -Y. Hsieh and S. Huber and S. Ishimoto and A. Ivanov and Yu. Ivanshin and T. Iwata and V. Jary and R. Joosten and P. Joerg and K. Juraskova and E. Kabuss and A. Kerbizi and B. Ketzer and G. V. Khaustov and Yu. A. Khokhlov and Yu. Kisselev and F. Klein and J. H. Koivuniemi and V. N. Kolosov and K. Kondo and I. Konorov and V. F. Konstantinov and A. M. Kotzinian and O. M. Kouznetsov and Z. Kral and M. Kraemer and F. Krinner and Z. V. Kroumchtein and Y. Kulinich and F. Kunne and K. Kurek and R. P. Kurjata and I. I. Kuznetsov and A. Kveton and A. A. Lednev and E. A. Levchenko and M. Levillain and S. Levorato and Y. -S. Lian and J. Lichtenstadt and R. Longo and V. E. Lyubovitskij and A. Maggiora and A. Magnon and N. Makins and N. Makke and G. K. Mallot and S. A. Mamon and C. Marchand and B. Marianski and A. Martin and J. Marzec and J. Matousek and H. Matsuda and T. Matsuda and G. V. Meshcheryakov and M. Meyer and W. Meyer and Yu. V. Mikhailov and M. Mikhasenko and E. Mitrofanov and N. Mitrofanov and Y. Miyachi and A. Moretti and A. Nagaytsev and F. Nerling and D. Neyret and J. Novy and W. -D. Nowak and G. Nukazuka and A. S. Nunes and A. G. Olshevsky and I. Orlov and M. Ostrick and D. Panzieri and B. Parsamyan and S. Paul and J. -C. Peng and F. Pereira and G. Pesaro and M. Pesek and M. Peskova and D. V. Peshekhonov and N. Pierre and S. Platchkov and J. Pochodzalla and V. A. Polyakov and J. Pretz and M. Quaresma and C. Quintans and S. Ramos and C. Regali and G. Reicherz and C. Riedl and N. S. Rogacheva and D. I. Ryabchikov and A. Rybnikov and A. Rychter and R. Salac and V. D. Samoylenko and A. Sandacz and C. Santos and S. Sarkar and I. A. Savin and T. Sawada and G. Sbrizzai and P. Schiavon and H. Schmieden and K. Schoennig and E. Seder and A. Selyunin and L. Silva and L. Sinha and S. Sirtl and M. Slunecka and J. Smolik and A. Srnka and D. Steffen and M. Stolarski and O. Subrt and M. Sulc and H. Suzuki and A. Szabelski and T. Szameitat and P. Sznajder and M. Tasevsky and S. Tessaro and F. Tessarotto and A. Thiel and J. Tomsa and F. Tosello and V. Tskhay and S. Uhl and B. I. Vasilishin and A. Vauth and B. M. Veit and J. Veloso and A. Vidon and M. Virius and S. Wallner and M. Wilfert and J. ter Wolbeek and K. Zaremba and P. Zavada and M. Zavertyaev and E. Zemlyanichkina and N. Zhuravlev and M. Ziembicki},
  journal= {arXiv preprint arXiv:1802.02739},
  year   = {2019}
}

Comments

13 pages, 5 figures