2015
DOI: 10.1016/j.physletb.2015.09.041
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Measurement of very forward neutron energy spectra for 7 TeV proton–proton collisions at the Large Hadron Collider

Abstract: The Large Hadron Collider forward (LHCf) experiment is designed to use the LHC to verify the hadronic-interaction models used in cosmic-ray physics. Forward baryon production is one of the crucial points to understand the development of cosmic-ray showers. We report the neutron-energy spectra for LHC √ s = 7 TeV proton-proton collisions with the pseudo-rapidity η ranging from 8.81 to 8.99, from 8.99 to 9.22, and from 10.76 to infinity. The measured energy spectra obtained from the two independent calorimeters … Show more

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Cited by 66 publications
(66 citation statements)
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“…respectively, have already been published [4][5][6][7]. Latest published results are presented in this paper: neutron energy spectra in p-p collisions at √ s = 7 TeV [8] are shown in Sect. 3.1 while results from π 0 transverse (P T ) and longitudinal (P Z ) momentum analysis in p-p at √ s = 2.76, 7 TeV and p-Pb collisions at √ s NN = 5.02 TeV [9] are shown in Sect.…”
Section: The Detectormentioning
confidence: 92%
See 1 more Smart Citation
“…respectively, have already been published [4][5][6][7]. Latest published results are presented in this paper: neutron energy spectra in p-p collisions at √ s = 7 TeV [8] are shown in Sect. 3.1 while results from π 0 transverse (P T ) and longitudinal (P Z ) momentum analysis in p-p at √ s = 2.76, 7 TeV and p-Pb collisions at √ s NN = 5.02 TeV [9] are shown in Sect.…”
Section: The Detectormentioning
confidence: 92%
“…In this section results from neutron analysis in p-p collisions at √ s = 7 TeV are presented [8]. [10].…”
Section: Neutron Energy Spectra In P-p Collisionsmentioning
confidence: 99%
“…LHCf group also published the neutron energy spectra in pp collisions at √ s =7 TeV [24]. DP-MJET 3.04 described the LHCf data well at the lower η range (9.22 > η > 8.81).…”
Section: Information From Lhcf Experimentsmentioning
confidence: 97%
“…Production cross sections of neutrons were also published using the 7 TeV proton-proton collision data [16]. The result covering 0 degree production angle showed a characteristic peak at around 2.5 TeV, and such high-energy excess was only qualitatively explained by the QGSJET II-03 model.…”
Section: Pos(eps-hep2017)025mentioning
confidence: 99%