001     616765
005     20241103101211.0
024 7 _ |a H1:2024nde
|2 INSPIRETeX
024 7 _ |a inspire:2768737
|2 inspire
024 7 _ |a arXiv:2403.08982
|2 arXiv
024 7 _ |a 10.3204/PUBDB-2024-06519
|2 datacite_doi
037 _ _ |a PUBDB-2024-06519
041 _ _ |a English
082 _ _ |a 530
088 _ _ |a arXiv:2403.08982
|2 arXiv
088 _ _ |a DESY-24-034
|2 DESY
100 1 _ |a Andreev, V.
|b 0
245 _ _ |a Observation and differential cross section measurement of neutral current DIS events with an empty hemisphere in the Breit frame
260 _ _ |c 2024
336 7 _ |a Preprint
|b preprint
|m preprint
|0 PUB:(DE-HGF)25
|s 1730298048_283357
|2 PUB:(DE-HGF)
336 7 _ |a WORKING_PAPER
|2 ORCID
336 7 _ |a Electronic Article
|0 28
|2 EndNote
336 7 _ |a preprint
|2 DRIVER
336 7 _ |a ARTICLE
|2 BibTeX
336 7 _ |a Output Types/Working Paper
|2 DataCite
500 _ _ |a 13 pages, 5 figures, 2 Tables. This version as accepted for publication
520 _ _ |a The Breit frame provides a natural frame to analyze lepton–proton scattering events. In this reference frame, the parton model hard interactions between a quark and an exchanged boson defines the coordinate system such that the struck quark is back-scattered along the virtual photon momentum direction. In Quantum Chromodynamics (QCD), higher order perturbative or non-perturbative effects can change this picture drastically. As Bjorken-x decreases below one half, a rather peculiar event signature is predicted with increasing probability, where no radiation is present in one of the two Breit-frame hemispheres and all emissions are to be found in the other hemisphere. At higher orders in $\alpha _{s}$ or in the presence of soft QCD effects, predictions of the rate of these events are far from trivial, and that motivates measurements with real data. We report on the first observation of the empty current hemisphere events in electron–proton collisions at the HERA collider using data recorded with the H1 detector at a center-of-mass energy of 319 GeV. The fraction of inclusive neutral-current DIS events with an empty hemisphere is found to be $0.0112 \pm 3.9\%_\text {stat} \pm 4.5\%_{\text {syst}} \pm 1.6\%_{\text {mod}}$ in the selected kinematic region of $150
536 _ _ |a 611 - Fundamental Particles and Forces (POF4-611)
|0 G:(DE-HGF)POF4-611
|c POF4-611
|f POF IV
|x 0
588 _ _ |a Dataset connected to CrossRef, INSPIRE, Journals: bib-pubdb1.desy.de
650 _ 7 |a experimental results
|2 INSPIRE
650 _ 7 |a H1
|2 INSPIRE
650 _ 7 |a deep inelastic scattering: neutral current
|2 INSPIRE
650 _ 7 |a quantum chromodynamics: effect
|2 INSPIRE
650 _ 7 |a photon: virtual
|2 INSPIRE
650 _ 7 |a model: parton
|2 INSPIRE
650 _ 7 |a effect: nonperturbative
|2 INSPIRE
650 _ 7 |a Breit frame
|2 INSPIRE
650 _ 7 |a Monte Carlo
|2 INSPIRE
650 _ 7 |a quark
|2 INSPIRE
650 _ 7 |a higher-order
|2 INSPIRE
650 _ 7 |a differential cross section: measured
|2 INSPIRE
650 _ 7 |a electron p: deep inelastic scattering
|2 INSPIRE
650 _ 7 |a kinematics
|2 INSPIRE
650 _ 7 |a backscatter
|2 INSPIRE
650 _ 7 |a DESY HERA Stor
|2 INSPIRE
693 _ _ |a HERA
|e HERA: H1
|1 EXP:(DE-588)4159571-3
|0 EXP:(DE-588)4443767-5
|5 EXP:(DE-588)4443767-5
|x 0
700 1 _ |a Arratia, M.
|b 1
700 1 _ |a Baghdasaryan, A.
|b 2
700 1 _ |a Baty, A.
|b 3
700 1 _ |a Begzsuren, K.
|b 4
700 1 _ |a Bolz, A.
|b 5
700 1 _ |a Boudry, V.
|b 6
700 1 _ |a Brandt, G.
|b 7
700 1 _ |a Britzger, D.
|b 8
700 1 _ |a Buniatyan, A.
|b 9
700 1 _ |a Bystritskaya, L.
|b 10
700 1 _ |a Campbell, A. J.
|b 11
700 1 _ |a Cantun Avila, K. B.
|b 12
700 1 _ |a Cerny, K.
|b 13
700 1 _ |a Chekelian, V.
|b 14
700 1 _ |a Chen, Z.
|b 15
700 1 _ |a Contreras, J. G.
|b 16
700 1 _ |a Cvach, J.
|b 17
700 1 _ |a Dainton, J. B.
|b 18
700 1 _ |a Daum, K.
|b 19
700 1 _ |a Deshpande, A.
|b 20
700 1 _ |a Diaconu, C.
|b 21
700 1 _ |a Drees, A.
|b 22
700 1 _ |a Eckerlin, G.
|b 23
700 1 _ |a Egli, S.
|b 24
700 1 _ |a Elsen, E.
|b 25
700 1 _ |a Favart, L.
|b 26
700 1 _ |a Fedotov, A.
|b 27
700 1 _ |a Feltesse, J.
|b 28
700 1 _ |a Fleischer, M.
|b 29
700 1 _ |a Fomenko, A.
|b 30
700 1 _ |a Gal, C.
|b 31
700 1 _ |a Gayler, J.
|b 32
700 1 _ |a Goerlich, L.
|b 33
700 1 _ |a Gogitidze, N.
|b 34
700 1 _ |a Gouzevitch, M.
|b 35
700 1 _ |a Grab, C.
|b 36
700 1 _ |a Greenshaw, T.
|b 37
700 1 _ |a Grindhammer, G.
|b 38
700 1 _ |a Haidt, D.
|b 39
700 1 _ |a Henderson, R. C. W.
|b 40
700 1 _ |a Hessler, J.
|b 41
700 1 _ |a Hladký, J.
|b 42
700 1 _ |a Hoffmann, D.
|b 43
700 1 _ |a Horisberger, R.
|b 44
700 1 _ |a Hreus, T.
|b 45
700 1 _ |a Huber, F.
|b 46
700 1 _ |a Jacobs, P. M.
|b 47
700 1 _ |a Jacquet, M.
|b 48
700 1 _ |a Janssen, T.
|b 49
700 1 _ |a Jung, A. W.
|b 50
700 1 _ |a Katzy, J.
|b 51
700 1 _ |a Kiesling, C.
|b 52
700 1 _ |a Klein, M.
|b 53
700 1 _ |a Kleinwort, C.
|b 54
700 1 _ |a Klest, H. T.
|b 55
700 1 _ |a Kluth, S.
|b 56
700 1 _ |a Kogler, R.
|b 57
700 1 _ |a Kostka, P.
|b 58
700 1 _ |a Kretzschmar, J.
|b 59
700 1 _ |a Krücker, D.
|b 60
700 1 _ |a Krüger, K.
|b 61
700 1 _ |a Landon, M. P. J.
|b 62
700 1 _ |a Lange, W.
|b 63
700 1 _ |a Laycock, P.
|b 64
700 1 _ |a Lee, S. H.
|b 65
700 1 _ |a Levonian, S.
|b 66
700 1 _ |a Li, W.
|b 67
700 1 _ |a Lin, J.
|b 68
700 1 _ |a Lipka, K.
|b 69
700 1 _ |a List, B.
|b 70
700 1 _ |a List, J.
|b 71
700 1 _ |a Lobodzinski, B.
|b 72
700 1 _ |a Long, O. R.
|b 73
700 1 _ |a Malinovski, E.
|b 74
700 1 _ |a Martyn, H.-U.
|b 75
700 1 _ |a Maxfield, S. J.
|b 76
700 1 _ |a Mehta, A.
|b 77
700 1 _ |a Meyer, A. B.
|b 78
700 1 _ |a Meyer, J.
|b 79
700 1 _ |a Mikocki, S.
|b 80
700 1 _ |a Mikuni, V. M.
|b 81
700 1 _ |a Mondal, M. M.
|b 82
700 1 _ |a Müller, K.
|b 83
700 1 _ |a Nachman, B.
|b 84
700 1 _ |a Naumann, Th.
|b 85
700 1 _ |a Newman, P. R.
|b 86
700 1 _ |a Niebuhr, C.
|b 87
700 1 _ |a Nowak, G.
|b 88
700 1 _ |a Olsson, J. E.
|b 89
700 1 _ |a Ozerov, D.
|b 90
700 1 _ |a Park, S.
|b 91
700 1 _ |a Pascaud, C.
|b 92
700 1 _ |a Patel, G. D.
|b 93
700 1 _ |a Perez, E.
|b 94
700 1 _ |a Petrukhin, A.
|b 95
700 1 _ |a Picuric, I.
|b 96
700 1 _ |a Pitzl, D.
|b 97
700 1 _ |a Polifka, R.
|b 98
700 1 _ |a Preins, S.
|b 99
700 1 _ |a Radescu, V.
|b 100
700 1 _ |a Raicevic, N.
|b 101
700 1 _ |a Ravdandorj, T.
|b 102
700 1 _ |a Reichelt, D.
|b 103
700 1 _ |a Reimer, P.
|b 104
700 1 _ |a Rizvi, E.
|b 105
700 1 _ |a Robmann, P.
|b 106
700 1 _ |a Roosen, R.
|b 107
700 1 _ |a Rostovtsev, A.
|b 108
700 1 _ |a Rotaru, M.
|b 109
700 1 _ |a Sankey, D. P. C.
|b 110
700 1 _ |a Sauter, M.
|b 111
700 1 _ |a Sauvan, E.
|b 112
700 1 _ |a Schmitt, S.
|0 P:(DE-H253)PIP1001586
|b 113
|e Corresponding author
700 1 _ |a Schmookler, B. A.
|b 114
700 1 _ |a Schnell, G.
|b 115
700 1 _ |a Schoeffel, L.
|b 116
700 1 _ |a Schöning, A.
|b 117
700 1 _ |a Schumann, S.
|b 118
700 1 _ |a Sefkow, F.
|b 119
700 1 _ |a Shushkevich, S.
|b 120
700 1 _ |a Soloviev, Y.
|b 121
700 1 _ |a Sopicki, P.
|b 122
700 1 _ |a South, D.
|b 123
700 1 _ |a Specka, A.
|b 124
700 1 _ |a Steder, M.
|b 125
700 1 _ |a Stella, B.
|b 126
700 1 _ |a Stöcker, L.
|b 127
700 1 _ |a Straumann, U.
|b 128
700 1 _ |a Sun, C.
|b 129
700 1 _ |a Sykora, T.
|b 130
700 1 _ |a Thompson, P. D.
|b 131
700 1 _ |a Acosta, F. Torales
|b 132
700 1 _ |a Traynor, D.
|b 133
700 1 _ |a Tseepeldorj, B.
|b 134
700 1 _ |a Tu, Z.
|b 135
700 1 _ |a Tustin, G.
|b 136
700 1 _ |a Valkárová, A.
|b 137
700 1 _ |a Vallée, C.
|b 138
700 1 _ |a Van Mechelen, P.
|b 139
700 1 _ |a Wegener, D.
|b 140
700 1 _ |a Wünsch, E.
|b 141
700 1 _ |a Žáček, J.
|b 142
700 1 _ |a Zhang, J.
|b 143
700 1 _ |a Zhang, Z.
|b 144
700 1 _ |a Žlebčík, R.
|b 145
700 1 _ |a Zohrabyan, H.
|b 146
700 1 _ |a Zomer, F.
|b 147
700 1 _ |a H1 Collaboration
|0 P:(DE-HGF)0
|b 148
|e Collaboration author
856 4 _ |y OpenAccess
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910 1 _ |a Deutsches Elektronen-Synchrotron
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913 1 _ |a DE-HGF
|b Forschungsbereich Materie
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914 1 _ |y 2024
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915 _ _ |a Published
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