European Physical Journal C: Particles and Fields (Mar 2022)
Characterisation of the dip-bump structure observed in proton–proton elastic scattering at $$\sqrt{s}$$ s = 8 TeV
- G. Antchev,
- P. Aspell,
- I. Atanassov,
- V. Avati,
- J. Baechler,
- C. Baldenegro Barrera,
- V. Berardi,
- M. Berretti,
- V. Borchsh,
- E. Bossini,
- U. Bottigli,
- M. Bozzo,
- H. Burkhardt,
- F. S. Cafagna,
- M. G. Catanesi,
- M. Csanád,
- T. Csörgő,
- M. Deile,
- F. De Leonardis,
- M. Doubek,
- D. Druzhkin,
- K. Eggert,
- V. Eremin,
- F. Ferro,
- A. Fiergolski,
- L. Forthomme,
- F. Garcia,
- V. Georgiev,
- S. Giani,
- L. Grzanka,
- J. Hammerbauer,
- T. Isidori,
- V. Ivanchenko,
- M. Janda,
- A. Karev,
- J. Kašpar,
- B. Kaynak,
- J. Kopal,
- V. Kundrát,
- S. Lami,
- G. Latino,
- R. Linhart,
- C. Lindsey,
- M. V. Lokajíček,
- L. Losurdo,
- F. Lucas Rodríguez,
- M. Macrí,
- M. Malawski,
- N. Minafra,
- S. Minutoli,
- T. Naaranoja,
- F. Nemes,
- H. Niewiadomski,
- T. Novák,
- E. Oliveri,
- F. Oljemark,
- M. Oriunno,
- K. Österberg,
- P. Palazzi,
- V. Passaro,
- Z. Peroutka,
- J. Procházka,
- M. Quinto,
- E. Radermacher,
- E. Radicioni,
- F. Ravotti,
- E. Robutti,
- C. Royon,
- G. Ruggiero,
- H. Saarikko,
- V. D. Samoylenko,
- A. Scribano,
- J. Siroky,
- J. Smajek,
- W. Snoeys,
- R. Stefanovitch,
- J. Sziklai,
- C. Taylor,
- E. Tcherniaev,
- N. Turini,
- O. Urban,
- V. Vacek,
- O. Vavroch,
- J. Welti,
- J. Williams,
- J. Zich,
- K. Zielinski,
- TOTEM Collaboration
Affiliations
- G. Antchev
- INRNE-BAS, Institute for Nuclear Research and Nuclear Energy, Bulgarian Academy of Sciences
- P. Aspell
- CERN
- I. Atanassov
- INRNE-BAS, Institute for Nuclear Research and Nuclear Energy, Bulgarian Academy of Sciences
- V. Avati
- AGH University of Science and Technology
- J. Baechler
- CERN
- C. Baldenegro Barrera
- The University of Kansas
- V. Berardi
- INFN Sezione di Bari
- M. Berretti
- Helsinki Institute of Physics, University of Helsinki
- V. Borchsh
- Tomsk State University
- E. Bossini
- Università degli Studi di Pisa
- U. Bottigli
- Università degli Studi di Siena and Gruppo Collegato INFN di Siena
- M. Bozzo
- INFN Sezione di Genova
- H. Burkhardt
- CERN
- F. S. Cafagna
- INFN Sezione di Bari
- M. G. Catanesi
- INFN Sezione di Bari
- M. Csanád
- Wigner Research Centre for Physics, RMI
- T. Csörgő
- Wigner Research Centre for Physics, RMI
- M. Deile
- CERN
- F. De Leonardis
- INFN Sezione di Bari
- M. Doubek
- Czech Technical University
- D. Druzhkin
- Tomsk State University
- K. Eggert
- Department of Physics, Case Western Reserve University
- V. Eremin
- Ioffe Physical-Technical Institute of Russian Academy of Sciences
- F. Ferro
- INFN Sezione di Genova
- A. Fiergolski
- CERN
- L. Forthomme
- Helsinki Institute of Physics, University of Helsinki
- F. Garcia
- Helsinki Institute of Physics, University of Helsinki
- V. Georgiev
- University of West Bohemia
- S. Giani
- CERN
- L. Grzanka
- AGH University of Science and Technology
- J. Hammerbauer
- University of West Bohemia
- T. Isidori
- The University of Kansas
- V. Ivanchenko
- Tomsk State University
- M. Janda
- Czech Technical University
- A. Karev
- CERN
- J. Kašpar
- Institute of Physics of the Academy of Sciences of the Czech Republic
- B. Kaynak
- Istanbul University
- J. Kopal
- CERN
- V. Kundrát
- Institute of Physics of the Academy of Sciences of the Czech Republic
- S. Lami
- INFN Sezione di Pisa
- G. Latino
- Università degli Studi di Siena and Gruppo Collegato INFN di Siena
- R. Linhart
- University of West Bohemia
- C. Lindsey
- The University of Kansas
- M. V. Lokajíček
- Institute of Physics of the Academy of Sciences of the Czech Republic
- L. Losurdo
- Università degli Studi di Siena and Gruppo Collegato INFN di Siena
- F. Lucas Rodríguez
- CERN
- M. Macrí
- INFN Sezione di Genova
- M. Malawski
- AGH University of Science and Technology
- N. Minafra
- The University of Kansas
- S. Minutoli
- INFN Sezione di Genova
- T. Naaranoja
- Helsinki Institute of Physics, University of Helsinki
- F. Nemes
- Wigner Research Centre for Physics, RMI
- H. Niewiadomski
- Department of Physics, Case Western Reserve University
- T. Novák
- MATE Institute of Technology KRC
- E. Oliveri
- CERN
- F. Oljemark
- Helsinki Institute of Physics, University of Helsinki
- M. Oriunno
- SLAC National Accelerator Laboratory
- K. Österberg
- Helsinki Institute of Physics, University of Helsinki
- P. Palazzi
- CERN
- V. Passaro
- INFN Sezione di Bari
- Z. Peroutka
- University of West Bohemia
- J. Procházka
- Institute of Physics of the Academy of Sciences of the Czech Republic
- M. Quinto
- INFN Sezione di Bari
- E. Radermacher
- CERN
- E. Radicioni
- INFN Sezione di Bari
- F. Ravotti
- CERN
- E. Robutti
- INFN Sezione di Genova
- C. Royon
- The University of Kansas
- G. Ruggiero
- CERN
- H. Saarikko
- Helsinki Institute of Physics, University of Helsinki
- V. D. Samoylenko
- NRC ‘Kurchatov Institute’-IHEP
- A. Scribano
- INFN Sezione di Pisa
- J. Siroky
- University of West Bohemia
- J. Smajek
- CERN
- W. Snoeys
- CERN
- R. Stefanovitch
- CERN
- J. Sziklai
- Wigner Research Centre for Physics, RMI
- C. Taylor
- Department of Physics, Case Western Reserve University
- E. Tcherniaev
- Tomsk State University
- N. Turini
- Università degli Studi di Siena and Gruppo Collegato INFN di Siena
- O. Urban
- University of West Bohemia
- V. Vacek
- Czech Technical University
- O. Vavroch
- University of West Bohemia
- J. Welti
- Helsinki Institute of Physics, University of Helsinki
- J. Williams
- The University of Kansas
- J. Zich
- University of West Bohemia
- K. Zielinski
- AGH University of Science and Technology
- TOTEM Collaboration
- DOI
- https://doi.org/10.1140/epjc/s10052-022-10065-x
- Journal volume & issue
-
Vol. 82,
no. 3
pp. 1 – 7
Abstract
Abstract The TOTEM collaboration at the CERN LHC has measured the differential cross-section of elastic proton–proton scattering at $$\sqrt{s} = 8\,\mathrm{TeV}$$ s = 8 TeV in the squared four-momentum transfer range $$0.2\,\mathrm{GeV^{2}}< |t| < 1.9\,\mathrm{GeV^{2}}$$ 0.2 GeV 2 < | t | < 1.9 GeV 2 . This interval includes the structure with a diffractive minimum (“dip”) and a secondary maximum (“bump”) that has also been observed at all other LHC energies, where measurements were made. A detailed characterisation of this structure for $$\sqrt{s} = 8\,\mathrm{TeV}$$ s = 8 TeV yields the positions, $$|t|_{\mathrm{dip}} = (0.521 \pm 0.007)\,\mathrm{GeV^2}$$ | t | dip = ( 0.521 ± 0.007 ) GeV 2 and $$|t|_{\mathrm{bump}} = (0.695 \pm 0.026)\,\mathrm{GeV^2}$$ | t | bump = ( 0.695 ± 0.026 ) GeV 2 , as well as the cross-section values, $$\left. {\mathrm{d}\sigma /\mathrm{d}t}\right| _{\mathrm{dip}} = (15.1 \pm 2.5)\,\mathrm{{\mu b/GeV^2}}$$ d σ / d t dip = ( 15.1 ± 2.5 ) μ b / GeV 2 and $$\left. {\mathrm{d}\sigma /\mathrm{d}t}\right| _{\mathrm{bump}} = (29.7 \pm 1.8)\,\mathrm{{\mu b/GeV^2}}$$ d σ / d t bump = ( 29.7 ± 1.8 ) μ b / GeV 2 , for the dip and the bump, respectively.