European Physical Journal C: Particles and Fields (Dec 2020)
Measurement of exclusive $${\varvec{{{{\pi ^+\pi ^-}}}}}$$ π + π - and $${\varvec{{{{\rho ^0}}}}}$$ ρ 0 meson photoproduction at HERA
- V. Andreev,
- A. Baghdasaryan,
- A. Baty,
- K. Begzsuren,
- A. Belousov,
- A. Bolz,
- V. Boudry,
- G. Brandt,
- D. Britzger,
- A. Buniatyan,
- L. Bystritskaya,
- A. J. Campbell,
- K. B. Cantun Avila,
- K. Cerny,
- V. Chekelian,
- Z. Chen,
- J. G. Contreras,
- J. Cvach,
- J. B. Dainton,
- K. Daum,
- A. Deshpande,
- C. Diaconu,
- G. Eckerlin,
- S. Egli,
- E. Elsen,
- L. Favart,
- A. Fedotov,
- J. Feltesse,
- M. Fleischer,
- A. Fomenko,
- C. Gal,
- J. Gayler,
- L. Goerlich,
- N. Gogitidze,
- M. Gouzevitch,
- C. Grab,
- A. Grebenyuk,
- T. Greenshaw,
- G. Grindhammer,
- D. Haidt,
- R. C. W. Henderson,
- J. Hladkỳ,
- D. Hoffmann,
- R. Horisberger,
- T. Hreus,
- F. Huber,
- M. Jacquet,
- X. Janssen,
- A. W. Jung,
- H. Jung,
- M. Kapichine,
- J. Katzy,
- C. Kiesling,
- M. Klein,
- C. Kleinwort,
- R. Kogler,
- P. Kostka,
- J. Kretzschmar,
- D. Krücker,
- K. Krüger,
- M. P. J. Landon,
- W. Lange,
- P. Laycock,
- A. Lebedev,
- S. Levonian,
- K. Lipka,
- B. List,
- J. List,
- W. Li,
- B. Lobodzinski,
- E. Malinovski,
- H.-U. Martyn,
- S. J. Maxfield,
- A. Mehta,
- A. B. Meyer,
- H. Meyer,
- J. Meyer,
- S. Mikocki,
- M. M. Mondal,
- A. Morozov,
- K. Müller,
- Th. Naumann,
- P. R. Newman,
- C. Niebuhr,
- G. Nowak,
- J. E. Olsson,
- D. Ozerov,
- S. Park,
- C. Pascaud,
- G. D. Patel,
- E. Perez,
- A. Petrukhin,
- I. Picuric,
- D. Pitzl,
- R. Polifka,
- V. Radescu,
- N. Raicevic,
- T. Ravdandorj,
- P. Reimer,
- E. Rizvi,
- P. Robmann,
- R. Roosen,
- A. Rostovtsev,
- M. Rotaru,
- D. P. C. Sankey,
- M. Sauter,
- E. Sauvan,
- S. Schmitt,
- B. A. Schmookler,
- L. Schoeffel,
- A. Schöning,
- F. Sefkow,
- S. Shushkevich,
- Y. Soloviev,
- P. Sopicki,
- D. South,
- V. Spaskov,
- A. Specka,
- M. Steder,
- B. Stella,
- U. Straumann,
- T. Sykora,
- P. D. Thompson,
- D. Traynor,
- P. Truöl,
- B. Tseepeldorj,
- Z. Tu,
- A. Valkárová,
- C. Vallée,
- P. Van Mechelen,
- D. Wegener,
- E. Wünsch,
- J. Žáček,
- J. Zhang,
- Z. Zhang,
- R. Žlebčík,
- H. Zohrabyan,
- F. Zomer
Affiliations
- V. Andreev
- Lebedev Physical Institute
- A. Baghdasaryan
- Yerevan Physics Institute
- A. Baty
- Rice University
- K. Begzsuren
- Institute of Physics and Technology of the Mongolian Academy of Sciences
- A. Belousov
- Lebedev Physical Institute
- A. Bolz
- DESY
- V. Boudry
- LLR, Ecole Polytechnique, CNRS/IN2P3
- G. Brandt
- II. Physikalisches Institut, Universität Göttingen
- D. Britzger
- Max-Planck-Institut für Physik
- A. Buniatyan
- School of Physics and Astronomy, University of Birmingham
- L. Bystritskaya
- Institute for Theoretical and Experimental Physics
- A. J. Campbell
- DESY
- K. B. Cantun Avila
- Departamento de Fisica Aplicada, CINVESTAV Mérida
- K. Cerny
- Joint Laboratory of Optics, Palackỳ University
- V. Chekelian
- Max-Planck-Institut für Physik
- Z. Chen
- Shandong University
- J. G. Contreras
- Departamento de Fisica Aplicada, CINVESTAV Mérida
- J. Cvach
- Institute of Physics, Academy of Sciences of the Czech Republic
- J. B. Dainton
- Department of Physics, University of Liverpool
- K. Daum
- Fachbereich C, Universität Wuppertal
- A. Deshpande
- Stony Brook University
- C. Diaconu
- Aix Marseille Université, CNRS/IN2P3, CPPM UMR 7346
- G. Eckerlin
- DESY
- S. Egli
- Paul Scherrer Institut
- E. Elsen
- CERN
- L. Favart
- Inter-University Institute for High Energies ULB-VUB, Brussels and Universiteit Antwerpen
- A. Fedotov
- Institute for Theoretical and Experimental Physics
- J. Feltesse
- Irfu/SPP, CE Saclay
- M. Fleischer
- DESY
- A. Fomenko
- Lebedev Physical Institute
- C. Gal
- Stony Brook University
- J. Gayler
- DESY
- L. Goerlich
- Institute of Nuclear Physics Polish Academy of Sciences
- N. Gogitidze
- Lebedev Physical Institute
- M. Gouzevitch
- Université Claude Bernard Lyon 1, CNRS/IN2P3
- C. Grab
- Institut für Teilchenphysik, ETH Zürich
- A. Grebenyuk
- Inter-University Institute for High Energies ULB-VUB, Brussels and Universiteit Antwerpen
- T. Greenshaw
- Department of Physics, University of Liverpool
- G. Grindhammer
- Max-Planck-Institut für Physik
- D. Haidt
- DESY
- R. C. W. Henderson
- Department of Physics, University of Lancaster
- J. Hladkỳ
- Institute of Physics, Academy of Sciences of the Czech Republic
- D. Hoffmann
- Aix Marseille Université, CNRS/IN2P3, CPPM UMR 7346
- R. Horisberger
- Paul Scherrer Institut
- T. Hreus
- Inter-University Institute for High Energies ULB-VUB, Brussels and Universiteit Antwerpen
- F. Huber
- Physikalisches Institut, Universität Heidelberg
- M. Jacquet
- LAL, Université Paris-Sud, CNRS/IN2P3
- X. Janssen
- Inter-University Institute for High Energies ULB-VUB, Brussels and Universiteit Antwerpen
- A. W. Jung
- Department of Physics and Astronomy, Purdue University
- H. Jung
- DESY
- M. Kapichine
- Joint Institute for Nuclear Research
- J. Katzy
- DESY
- C. Kiesling
- Max-Planck-Institut für Physik
- M. Klein
- Department of Physics, University of Liverpool
- C. Kleinwort
- DESY
- R. Kogler
- Institut für Experimentalphysik, Universität Hamburg
- P. Kostka
- Department of Physics, University of Liverpool
- J. Kretzschmar
- Department of Physics, University of Liverpool
- D. Krücker
- DESY
- K. Krüger
- DESY
- M. P. J. Landon
- School of Physics and Astronomy, Queen Mary University of London
- W. Lange
- DESY
- P. Laycock
- Department of Physics, University of Liverpool
- A. Lebedev
- Lebedev Physical Institute
- S. Levonian
- DESY
- K. Lipka
- DESY
- B. List
- DESY
- J. List
- DESY
- W. Li
- Rice University
- B. Lobodzinski
- Max-Planck-Institut für Physik
- E. Malinovski
- Lebedev Physical Institute
- H.-U. Martyn
- I. Physikalisches Institut der RWTH
- S. J. Maxfield
- Department of Physics, University of Liverpool
- A. Mehta
- Department of Physics, University of Liverpool
- A. B. Meyer
- DESY
- H. Meyer
- Fachbereich C, Universität Wuppertal
- J. Meyer
- DESY
- S. Mikocki
- Institute of Nuclear Physics Polish Academy of Sciences
- M. M. Mondal
- Stony Brook University
- A. Morozov
- Joint Institute for Nuclear Research
- K. Müller
- Physik-Institut der Universität Zürich
- Th. Naumann
- DESY
- P. R. Newman
- School of Physics and Astronomy, University of Birmingham
- C. Niebuhr
- DESY
- G. Nowak
- Institute of Nuclear Physics Polish Academy of Sciences
- J. E. Olsson
- DESY
- D. Ozerov
- Paul Scherrer Institut
- S. Park
- Stony Brook University
- C. Pascaud
- LAL, Université Paris-Sud, CNRS/IN2P3
- G. D. Patel
- Department of Physics, University of Liverpool
- E. Perez
- CERN
- A. Petrukhin
- Université Claude Bernard Lyon 1, CNRS/IN2P3
- I. Picuric
- Faculty of Science, University of Montenegro
- D. Pitzl
- DESY
- R. Polifka
- Faculty of Mathematics and Physics, Charles University
- V. Radescu
- Department of Physics, Oxford University
- N. Raicevic
- Faculty of Science, University of Montenegro
- T. Ravdandorj
- Institute of Physics and Technology of the Mongolian Academy of Sciences
- P. Reimer
- Institute of Physics, Academy of Sciences of the Czech Republic
- E. Rizvi
- School of Physics and Astronomy, Queen Mary University of London
- P. Robmann
- Physik-Institut der Universität Zürich
- R. Roosen
- Inter-University Institute for High Energies ULB-VUB, Brussels and Universiteit Antwerpen
- A. Rostovtsev
- Institute for Information Transmission Problems RAS
- M. Rotaru
- Horia Hulubei National Institute for R&D in Physics and Nuclear Engineering (IFIN-HH)
- D. P. C. Sankey
- STFC, Rutherford Appleton Laboratory
- M. Sauter
- Physikalisches Institut, Universität Heidelberg
- E. Sauvan
- Aix Marseille Université, CNRS/IN2P3, CPPM UMR 7346
- S. Schmitt
- DESY
- B. A. Schmookler
- Stony Brook University
- L. Schoeffel
- Irfu/SPP, CE Saclay
- A. Schöning
- Physikalisches Institut, Universität Heidelberg
- F. Sefkow
- DESY
- S. Shushkevich
- Skobeltsyn Institute of Nuclear Physics, Lomonosov Moscow State University
- Y. Soloviev
- Lebedev Physical Institute
- P. Sopicki
- Institute of Nuclear Physics Polish Academy of Sciences
- D. South
- DESY
- V. Spaskov
- Joint Institute for Nuclear Research
- A. Specka
- LLR, Ecole Polytechnique, CNRS/IN2P3
- M. Steder
- DESY
- B. Stella
- Dipartimento di Fisica, Università di Roma Tre and INFN Roma 3
- U. Straumann
- Physik-Institut der Universität Zürich
- T. Sykora
- Faculty of Mathematics and Physics, Charles University
- P. D. Thompson
- School of Physics and Astronomy, University of Birmingham
- D. Traynor
- School of Physics and Astronomy, Queen Mary University of London
- P. Truöl
- Physik-Institut der Universität Zürich
- B. Tseepeldorj
- Institute of Physics and Technology of the Mongolian Academy of Sciences
- Z. Tu
- Brookhaven National Laboratory
- A. Valkárová
- Faculty of Mathematics and Physics, Charles University
- C. Vallée
- Aix Marseille Université, CNRS/IN2P3, CPPM UMR 7346
- P. Van Mechelen
- Inter-University Institute for High Energies ULB-VUB, Brussels and Universiteit Antwerpen
- D. Wegener
- Institut für Physik, TU Dortmund
- E. Wünsch
- DESY
- J. Žáček
- Faculty of Mathematics and Physics, Charles University
- J. Zhang
- Stony Brook University
- Z. Zhang
- LAL, Université Paris-Sud, CNRS/IN2P3
- R. Žlebčík
- DESY
- H. Zohrabyan
- Yerevan Physics Institute
- F. Zomer
- LAL, Université Paris-Sud, CNRS/IN2P3
- DOI
- https://doi.org/10.1140/epjc/s10052-020-08587-3
- Journal volume & issue
-
Vol. 80,
no. 12
pp. 1 – 54
Abstract
Abstract Exclusive photoproduction of $${{\rho ^0}} (770)$$ ρ 0 ( 770 ) mesons is studied using the H1 detector at the ep collider HERA. A sample of about 900,000 events is used to measure single- and double-differential cross sections for the reaction $$\gamma p \rightarrow \pi ^{+}\pi ^{-}Y$$ γ p → π + π - Y . Reactions where the proton stays intact ( $${{{m_Y}} {=}m_p}$$ m Y = m p ) are statistically separated from those where the proton dissociates to a low-mass hadronic system ( $$m_p{<}{{m_Y}} {<}10~{{\text {GeV}}} $$ m p < m Y < 10 GeV ). The double-differential cross sections are measured as a function of the invariant mass $$m_{\pi \pi }$$ m π π of the decay pions and the squared 4-momentum transfer t at the proton vertex. The measurements are presented in various bins of the photon–proton collision energy $${{W_{\gamma p}}} $$ W γ p . The phase space restrictions are $$0.5\le m_{\pi \pi } \le 2.2~{{\text {GeV}}} $$ 0.5 ≤ m π π ≤ 2.2 GeV , $$\vert t\vert \le 1.5~{{\text {GeV}^2}} $$ | t | ≤ 1.5 GeV 2 , and $$20 \le W_{\gamma p} \le 80~{{\text {GeV}}} $$ 20 ≤ W γ p ≤ 80 GeV . Cross section measurements are presented for both elastic and proton-dissociative scattering. The observed cross section dependencies are described by analytic functions. Parametrising the $${m_{\pi \pi }}$$ m π π dependence with resonant and non-resonant contributions added at the amplitude level leads to a measurement of the $${{\rho ^0}} (770)$$ ρ 0 ( 770 ) meson mass and width at $$m_\rho = 770.8{}^{+2.6}_{-2.7}~({\text {tot.}})~{{\text {MeV}}} $$ m ρ = 770.8 - 2.7 + 2.6 ( tot. ) MeV and $$\Gamma _\rho = 151.3 {}^{+2.7}_{-3.6}~({\text {tot.}})~{{\text {MeV}}} $$ Γ ρ = 151.3 - 3.6 + 2.7 ( tot. ) MeV , respectively. The model is used to extract the $${{\rho ^0}} (770)$$ ρ 0 ( 770 ) contribution to the $$\pi ^{+}\pi ^{-}$$ π + π - cross sections and measure it as a function of t and $${W_{\gamma p}}$$ W γ p . In a Regge asymptotic limit in which one Regge trajectory $$\alpha (t)$$ α ( t ) dominates, the intercept $$\alpha (t{=}0) = 1.0654\ {}^{+0.0098}_{-0.0067}~({\text {tot.}})$$ α ( t = 0 ) = 1.0654 - 0.0067 + 0.0098 ( tot. ) and the slope $$\alpha ^\prime (t{=}0) = 0.233 {}^{+0.067 }_{-0.074 }~({\text {tot.}}) ~{{\text {GeV}^{-2}}} $$ α ′ ( t = 0 ) = 0.233 - 0.074 + 0.067 ( tot. ) GeV - 2 of the t dependence are extracted for the case $$m_Y{=}m_p$$ m Y = m p .