European Physical Journal C: Particles and Fields (Dec 2024)
The azimuthal correlation between the leading jet and the scattered lepton in deep inelastic scattering at HERA
- ZEUS Collaboration,
- I. Abt,
- R. Aggarwal,
- V. Aushev,
- O. Behnke,
- A. Bertolin,
- I. Bloch,
- I. Brock,
- N. H. Brook,
- R. Brugnera,
- A. Bruni,
- P. J. Bussey,
- A. Caldwell,
- C. D. Catterall,
- J. Chwastowski,
- J. Ciborowski,
- R. Ciesielski,
- A. M. Cooper-Sarkar,
- M. Corradi,
- R. K. Dementiev,
- S. Dusini,
- J. Ferrando,
- B. Foster,
- E. Gallo,
- D. Gangadharan,
- A. Garfagnini,
- A. Geiser,
- G. Grzelak,
- C. Gwenlan,
- D. Hochman,
- N. Z. Jomhari,
- I. Kadenko,
- U. Karshon,
- P. Kaur,
- R. Klanner,
- U. Klein,
- I. A. Korzhavina,
- N. Kovalchuk,
- M. Kuze,
- B. B. Levchenko,
- A. Levy,
- B. Löhr,
- E. Lohrmann,
- A. Longhin,
- F. Lorkowski,
- E. Lunghi,
- I. Makarenko,
- J. Malka,
- S. Masciocchi,
- K. Nagano,
- J. D. Nam,
- Yu. Onishchuk,
- E. Paul,
- I. Pidhurskyi,
- A. Polini,
- M. Przybycień,
- A. Quintero,
- M. Ruspa,
- U. Schneekloth,
- T. Schörner-Sadenius,
- I. Selyuzhenkov,
- M. Shchedrolosiev,
- L. M. Shcheglova,
- N. Sherrill,
- I. O. Skillicorn,
- W. Słomiński,
- A. Solano,
- L. Stanco,
- N. Stefaniuk,
- B. Surrow,
- K. Tokushuku,
- O. Turkot,
- T. Tymieniecka,
- A. Verbytskyi,
- W. A. T. Wan Abdullah,
- K. Wichmann,
- M. Wing,
- S. Yamada,
- Y. Yamazaki,
- A. F. Żarnecki,
- O. Zenaiev
Affiliations
- ZEUS Collaboration
- I. Abt
- Max-Planck-Institut für Physik
- R. Aggarwal
- DST-Inspire Faculty, Department of Technology, SPPU
- V. Aushev
- Department of Nuclear Physics, National Taras Shevchenko University of Kyiv
- O. Behnke
- Deutsches Elektronen-Synchrotron DESY
- A. Bertolin
- INFN Padova
- I. Bloch
- Deutsches Elektronen-Synchrotron DESY
- I. Brock
- Physikalisches Institut der Universität Bonn
- N. H. Brook
- Physics and Astronomy Department, University College London
- R. Brugnera
- Dipartimento di Fisica e Astronomia dell’ Università and INFN
- A. Bruni
- INFN Bologna
- P. J. Bussey
- School of Physics and Astronomy, University of Glasgow
- A. Caldwell
- Max-Planck-Institut für Physik
- C. D. Catterall
- Department of Physics, York University
- J. Chwastowski
- The Henryk Niewodniczanski Institute of Nuclear Physics, Polish Academy of Sciences
- J. Ciborowski
- Faculty of Physics, University of Warsaw
- R. Ciesielski
- Deutsches Elektronen-Synchrotron DESY
- A. M. Cooper-Sarkar
- Department of Physics, University of Oxford
- M. Corradi
- INFN Bologna
- R. K. Dementiev
- Affiliated with an Institute Covered by a Current or Former Collaboration Agreement with DESY
- S. Dusini
- INFN Padova
- J. Ferrando
- Physics Department, Lancaster University
- B. Foster
- Department of Physics, University of Oxford
- E. Gallo
- Hamburg University, Institute of Experimental Physics
- D. Gangadharan
- Physikalisches Institut of the University of Heidelberg
- A. Garfagnini
- Dipartimento di Fisica e Astronomia dell’ Università and INFN
- A. Geiser
- Deutsches Elektronen-Synchrotron DESY
- G. Grzelak
- Faculty of Physics, University of Warsaw
- C. Gwenlan
- Department of Physics, University of Oxford
- D. Hochman
- Department of Particle Physics and Astrophysics, Weizmann Institute
- N. Z. Jomhari
- Deutsches Elektronen-Synchrotron DESY
- I. Kadenko
- Department of Nuclear Physics, National Taras Shevchenko University of Kyiv
- U. Karshon
- Department of Particle Physics and Astrophysics, Weizmann Institute
- P. Kaur
- Sant Longowal Institute of Engineering and Technology
- R. Klanner
- Hamburg University, Institute of Experimental Physics
- U. Klein
- Deutsches Elektronen-Synchrotron DESY
- I. A. Korzhavina
- Affiliated with an Institute Covered by a Current or Former Collaboration Agreement with DESY
- N. Kovalchuk
- Hamburg University, Institute of Experimental Physics
- M. Kuze
- Department of Physics, Tokyo Institute of Technology
- B. B. Levchenko
- Affiliated with an Institute Covered by a Current or Former Collaboration Agreement with DESY
- A. Levy
- Raymond and Beverly Sackler Faculty of Exact Sciences, School of Physics, Tel Aviv University
- B. Löhr
- Deutsches Elektronen-Synchrotron DESY
- E. Lohrmann
- Hamburg University, Institute of Experimental Physics
- A. Longhin
- Dipartimento di Fisica e Astronomia dell’ Università and INFN
- F. Lorkowski
- Physik-Institut, University of Zurich
- E. Lunghi
- Department of Physics, Indiana University Bloomington
- I. Makarenko
- Deutsches Elektronen-Synchrotron DESY
- J. Malka
- Deutsches Elektronen-Synchrotron DESY
- S. Masciocchi
- GSI Helmholtzzentrum für Schwerionenforschung GmbH
- K. Nagano
- Institute of Particle and Nuclear Studies, KEK
- J. D. Nam
- Max-Planck-Institut für Physik
- Yu. Onishchuk
- Department of Nuclear Physics, National Taras Shevchenko University of Kyiv
- E. Paul
- Physikalisches Institut der Universität Bonn
- I. Pidhurskyi
- Institut für Kernphysik, Goethe Universität
- A. Polini
- INFN Bologna
- M. Przybycień
- Faculty of Physics and Applied Computer Science, AGH University of Science and Technology
- A. Quintero
- Department of Physics, Temple University
- M. Ruspa
- Università del Piemonte Orientale, Novara and INFN
- U. Schneekloth
- Deutsches Elektronen-Synchrotron DESY
- T. Schörner-Sadenius
- Deutsches Elektronen-Synchrotron DESY
- I. Selyuzhenkov
- GSI Helmholtzzentrum für Schwerionenforschung GmbH
- M. Shchedrolosiev
- Deutsches Elektronen-Synchrotron DESY
- L. M. Shcheglova
- Affiliated with an Institute Covered by a Current or Former Collaboration Agreement with DESY
- N. Sherrill
- Department of Physics and Astronomy, University of Sussex
- I. O. Skillicorn
- School of Physics and Astronomy, University of Glasgow
- W. Słomiński
- Department of Physics, Jagellonian University
- A. Solano
- Università di Torino and INFN
- L. Stanco
- INFN Padova
- N. Stefaniuk
- Deutsches Elektronen-Synchrotron DESY
- B. Surrow
- Department of Physics, Temple University
- K. Tokushuku
- Institute of Particle and Nuclear Studies, KEK
- O. Turkot
- Deutsches Elektronen-Synchrotron DESY
- T. Tymieniecka
- National Centre for Nuclear Research
- A. Verbytskyi
- Max-Planck-Institut für Physik
- W. A. T. Wan Abdullah
- National Centre for Particle Physics, Universiti Malaya
- K. Wichmann
- Deutsches Elektronen-Synchrotron DESY
- M. Wing
- Physics and Astronomy Department, University College London
- S. Yamada
- Institute of Particle and Nuclear Studies, KEK
- Y. Yamazaki
- Department of Physics, Kobe University
- A. F. Żarnecki
- Faculty of Physics, University of Warsaw
- O. Zenaiev
- Deutsches Elektronen-Synchrotron DESY
- DOI
- https://doi.org/10.1140/epjc/s10052-024-13547-2
- Journal volume & issue
-
Vol. 84,
no. 12
pp. 1 – 28
Abstract
Abstract The azimuthal correlation angle, $$\Delta \phi $$ Δ ϕ , between the scattered lepton and the leading jet in deep inelastic $$e^{\pm }p$$ e ± p scattering at HERA has been studied using data collected with the ZEUS detector at a centre-of-mass energy of $$\sqrt{s} = 318 {\,\text {Ge}\hspace{-0.66666pt}\text {V}}$$ s = 318 Ge V , corresponding to an integrated luminosity of $$326 \,\text {pb}^{-1}$$ 326 pb - 1 . A measurement of jet cross sections in the laboratory frame was made in a fiducial region corresponding to photon virtuality $$10 {\,\text {Ge}\hspace{-0.66666pt}\text {V}}^2 10 {\,\text {Ge}\hspace{-0.66666pt}\text {V}}$$ E e > 10 Ge V , lepton polar angle $$140^\circ< \theta _e < 180^\circ $$ 140 ∘ < θ e < 180 ∘ , jet transverse momentum $$2.5 {\,\text {Ge}\hspace{-0.66666pt}\text {V}}< p_\textrm{T,jet} < 30 {\,\text {Ge}\hspace{-0.66666pt}\text {V}}$$ 2.5 Ge V < p T,jet < 30 Ge V , and jet pseudorapidity $$-1.5< \eta _\textrm{jet} < 1.8$$ - 1.5 < η jet < 1.8 . Jets were reconstructed using the $$k_\textrm{T}$$ k T algorithm with the radius parameter $$R = 1$$ R = 1 . The leading jet in an event is defined as the jet that carries the highest $$p_\textrm{T,jet}$$ p T,jet . Differential cross sections, $$d\sigma /d\Delta \phi $$ d σ / d Δ ϕ , were measured as a function of the azimuthal correlation angle in various ranges of leading-jet transverse momentum, photon virtuality and jet multiplicity. Perturbative calculations at $$\mathcal {O}(\alpha _{s}^2)$$ O ( α s 2 ) accuracy successfully describe the data within the fiducial region, although a lower level of agreement is observed near $$\Delta \phi \rightarrow \pi $$ Δ ϕ → π for events with high jet multiplicity, due to limitations of the perturbative approach in describing soft phenomena in QCD. The data are equally well described by Monte Carlo predictions that supplement leading-order matrix elements with parton showering.