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Erratum to : Study of dijet events with a large rapidity gap between the two leading jets in pp collisions at s = 7 Te (The European Physical Journal C, (2018), 78, 3, (242), 10.1140/epjc/s10052-018-5691-6). / The CMS collaboration.

In: European Physical Journal C, Vol. 80, No. 5, 441, 01.05.2020.

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@article{fdc26cc8ec104669bf5dabba3e2b17fc,
title = "Erratum to: Study of dijet events with a large rapidity gap between the two leading jets in pp collisions at s = 7 Te (The European Physical Journal C, (2018), 78, 3, (242), 10.1140/epjc/s10052-018-5691-6)",
abstract = "This erratum corrects the dedication in the PDF version of the original published manuscript: diractive processes should be diffractive processes. Abstract Eventswith no charged particles produced between the two leading jets are studied in proton–proton collisions at √s = 7 TeV. The jets were required to have transverse momentum pjet T > 40 GeV and pseudorapidity 1.5 > |ηjet| > 4.7, and to have values of ?jet with opposite signs. The data used for this study were collected with the CMSdetector during low-luminosity running at the LHC, and correspond to an integrated luminosity of 8 pb-1. Events with no charged particles with pT > 0.2GeV in the interval -1 < η < 1 between the jets are observed in excess of calculations that assume no color-singlet exchange. The fraction of events with such a rapidity gap, amounting to 0.5–1% of the selected dijet sample, is measured as a function of the pT of the second-leading jet and of the rapidity separation between the jets. The data are compared to previous measurements at the Tevatron, and to perturbative quantum chromodynamics calculations based on the Balitsky–Fadin–Kuraev–Lipatov evolution equations, including different models of the nonperturbative gap survival probability.",
author = "{The CMS collaboration} and Sirunyan, {A. M.} and A. Tumasyan and W. Adam and E. Asilar and T. Bergauer and J. Brandstetter and E. Brondolin and M. Dragicevic and J. Er{\"o} and M. Flechl and M. Friedl and R. Fr{\"u}hwirth and Ghete, {V. M.} and C. Hartl and N. H{\"o}rmann and J. Hrubec and M. Jeitler and A. K{\"o}nig and I. Kr{\"a}tschmer and D. Liko and T. Matsushita and I. Mikulec and D. Rabady and N. Rad and B. Rahbaran and H. Rohringer and J. Schieck and J. Strauss and W. Waltenberger and Wulz, {C. E.} and O. Dvornikov and V. Makarenko and V. Mossolov and Gonzalez, {J. Suarez} and V. Zykunov and N. Shumeiko and S. Alderweireldt and {De Wolf}, {E. A.} and X. Janssen and J. Lauwers and {Van De Klundert}, M. and {Van Haevermaet}, H. and {Van Mechelen}, P. and {Van Remortel}, N. and {Van Spilbeeck}, A. and Zeid, {S. Abu} and F. Blekman and V. Blinov and Y. Skovpen and D. Shtol",
year = "2020",
month = may,
day = "1",
doi = "10.1140/epjc/s10052-020-7946-2",
language = "English",
volume = "80",
journal = "European Physical Journal C",
issn = "1434-6044",
publisher = "Springer Nature",
number = "5",

}

RIS

TY - JOUR

T1 - Erratum to

T2 - Study of dijet events with a large rapidity gap between the two leading jets in pp collisions at s = 7 Te (The European Physical Journal C, (2018), 78, 3, (242), 10.1140/epjc/s10052-018-5691-6)

AU - The CMS collaboration

AU - Sirunyan, A. M.

AU - Tumasyan, A.

AU - Adam, W.

AU - Asilar, E.

AU - Bergauer, T.

AU - Brandstetter, J.

AU - Brondolin, E.

AU - Dragicevic, M.

AU - Erö, J.

AU - Flechl, M.

AU - Friedl, M.

AU - Frühwirth, R.

AU - Ghete, V. M.

AU - Hartl, C.

AU - Hörmann, N.

AU - Hrubec, J.

AU - Jeitler, M.

AU - König, A.

AU - Krätschmer, I.

AU - Liko, D.

AU - Matsushita, T.

AU - Mikulec, I.

AU - Rabady, D.

AU - Rad, N.

AU - Rahbaran, B.

AU - Rohringer, H.

AU - Schieck, J.

AU - Strauss, J.

AU - Waltenberger, W.

AU - Wulz, C. E.

AU - Dvornikov, O.

AU - Makarenko, V.

AU - Mossolov, V.

AU - Gonzalez, J. Suarez

AU - Zykunov, V.

AU - Shumeiko, N.

AU - Alderweireldt, S.

AU - De Wolf, E. A.

AU - Janssen, X.

AU - Lauwers, J.

AU - Van De Klundert, M.

AU - Van Haevermaet, H.

AU - Van Mechelen, P.

AU - Van Remortel, N.

AU - Van Spilbeeck, A.

AU - Zeid, S. Abu

AU - Blekman, F.

AU - Blinov, V.

AU - Skovpen, Y.

AU - Shtol, D.

PY - 2020/5/1

Y1 - 2020/5/1

N2 - This erratum corrects the dedication in the PDF version of the original published manuscript: diractive processes should be diffractive processes. Abstract Eventswith no charged particles produced between the two leading jets are studied in proton–proton collisions at √s = 7 TeV. The jets were required to have transverse momentum pjet T > 40 GeV and pseudorapidity 1.5 > |ηjet| > 4.7, and to have values of ?jet with opposite signs. The data used for this study were collected with the CMSdetector during low-luminosity running at the LHC, and correspond to an integrated luminosity of 8 pb-1. Events with no charged particles with pT > 0.2GeV in the interval -1 < η < 1 between the jets are observed in excess of calculations that assume no color-singlet exchange. The fraction of events with such a rapidity gap, amounting to 0.5–1% of the selected dijet sample, is measured as a function of the pT of the second-leading jet and of the rapidity separation between the jets. The data are compared to previous measurements at the Tevatron, and to perturbative quantum chromodynamics calculations based on the Balitsky–Fadin–Kuraev–Lipatov evolution equations, including different models of the nonperturbative gap survival probability.

AB - This erratum corrects the dedication in the PDF version of the original published manuscript: diractive processes should be diffractive processes. Abstract Eventswith no charged particles produced between the two leading jets are studied in proton–proton collisions at √s = 7 TeV. The jets were required to have transverse momentum pjet T > 40 GeV and pseudorapidity 1.5 > |ηjet| > 4.7, and to have values of ?jet with opposite signs. The data used for this study were collected with the CMSdetector during low-luminosity running at the LHC, and correspond to an integrated luminosity of 8 pb-1. Events with no charged particles with pT > 0.2GeV in the interval -1 < η < 1 between the jets are observed in excess of calculations that assume no color-singlet exchange. The fraction of events with such a rapidity gap, amounting to 0.5–1% of the selected dijet sample, is measured as a function of the pT of the second-leading jet and of the rapidity separation between the jets. The data are compared to previous measurements at the Tevatron, and to perturbative quantum chromodynamics calculations based on the Balitsky–Fadin–Kuraev–Lipatov evolution equations, including different models of the nonperturbative gap survival probability.

UR - http://www.scopus.com/inward/record.url?scp=85088935907&partnerID=8YFLogxK

U2 - 10.1140/epjc/s10052-020-7946-2

DO - 10.1140/epjc/s10052-020-7946-2

M3 - Comment/debate

AN - SCOPUS:85088935907

VL - 80

JO - European Physical Journal C

JF - European Physical Journal C

SN - 1434-6044

IS - 5

M1 - 441

ER -

ID: 24985860