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1.
Status and prospects of the LHCf experiment / LHCf Collaboration
The Large Hadron Collider forward (LHCf) experiment at the Large Hadron Collider (LHC) measures neutral particle production in the very forward region of proton-proton and proton-ion collisions, aiming to improve hadronic interaction models (HIMs) used in ultra-high-energy cosmic ray (UHECR) simulations. This paper presents recent experimental activities of LHCf. [...]
2024 - 7 p. - Published in : PoS ICHEP2024 (2025) 687 Fulltext: PDF;
In : 42nd International Conference on High Energy Physics (ICHEP 2024), Prague, Czech Republic, 18 - 24 Jul 2024, pp.687
2.
Reconstruction of multiple calorimetric clusters in the LHCf experiment with machine learning techniques / LHCf Collaboration
One of the major challenges in the Large Hadron Collider forward (LHCf) experiment is the accurate reconstruction of calorimetric clusters when multiple particles hit the same detector tower simultaneously. Traditional reconstruction methods struggle with overlapping signals, especially in events involving more than two particles or a combination of photons and neutrons. [...]
2024 - 7 p. - Published in : PoS ICHEP2024 (2025) 1016 Fulltext: PDF;
In : 42nd International Conference on High Energy Physics (ICHEP 2024), Prague, Czech Republic, 18 - 24 Jul 2024, pp.1016
3.
LHCf Run II physics results in proton-proton collisions at $\sqrt{s}$ = 13 TeV / Tiberio, A (INFN, Florence) ; Adriani, O (INFN, Florence ; Florence U.) ; Berti, E (INFN, Florence ; Florence U.) ; Betti, P (INFN, Florence ; Florence U.) ; Bonechi, L (INFN, Florence) ; Bongi, M (INFN, Florence ; Florence U.) ; D'Alessandro, R (INFN, Florence ; Florence U.) ; Detti, S (INFN, Florence) ; Haguenauer, M (Ecole Polytechnique) ; Itow, Y (Nagoya U., ISEE ; KMI, Nagoya) et al.
The LHC-forward experiment (LHCf), located at the Large Hadron Collider (LHC), is designed to measure the production cross section of neutral particles in the very-forward region, covering the pseudorapidity region above 8.4 (up to zero-degree particles). By measuring the very-forward particle production rates at the highest energy possible at an accelerator, LHCf will provide fundamental informations to improve phenomenological hadronic interaction models used in the simulation of air-showers induced by ultra-high-energy cosmic rays in the atmosphere. [...]
2022 - 6 p. - Published in : PoS ICHEP2022 (2022) 121 Fulltext: PDF;
In : 41st International Conference on High Energy Physics (ICHEP 2022), Bologna, Italy, 6 - 13 Jul 2022, pp.121
4.
Measurement of the forward η meson production rate in p-p collisions at $ \sqrt{\textrm{s}} $ = 13 TeV with the LHCf-Arm2 detector / Piparo, G. (INFN, Catania ; Catania U.) ; Adriani, O. (INFN, Florence ; Florence U.) ; Berti, E. (INFN, Florence ; Florence U.) ; Betti, P. (INFN, Florence ; Florence U.) ; Bonechi, L. (INFN, Florence ; Florence U.) ; Bongi, M. (INFN, Florence ; Florence U.) ; D'Alessandro, R. (INFN, Florence ; Florence U.) ; Detti, S. (INFN, Florence ; Florence U.) ; Hagenauer, M. (LLR, Palaiseau) ; Itow, Y. (Nagoya U., ISEE ; KMI, Nagoya) et al. /LHCf
The forward η mesons production has been observed by the Large Hadron Collider forward (LHCf) experiment in proton-proton collision at √s=13 TeV. This paper presents the measurement of the inclusive production rate of η in pT < 1.1 GeV/c, expressed as a function of the Feynman-x variable. [...]
arXiv:2305.06633; CERN-EP-2023-076.- Geneva : CERN, 2023-10-27 - 19 p. - Published in : JHEP 2310 (2023) 169 Draft (restricted): PDF; Fulltext: CERN-EP-2023-076 - PDF; 2305.06633 - PDF; document - PDF;
5.
Measurement of energy flow, cross section and average inelasticity of forward neutrons generated in $\mathrm{\sqrt{s} = 13 TeV}$ proton-proton collisions with the LHCf Arm2 detector / LHCf Collaboration
In this paper, we report the measurement of the energy flow, the cross section and the average inelasticity of forward neutrons (+ antineutrons) produced in $\sqrt{s} = 13$ TeV proton-proton collisions. These quantities are obtained from the inclusive differential production cross section, measured using the LHCf Arm2 detector at the CERN Large Hadron Collider. [...]
arXiv:2003.02192; CERN-EP-2020-029.- 2020-07-02 - 22 p. - Published in : JHEP 2007 (2020) 016 Article from SCOAP3: scoap3-fulltext - PDF; scoap - PDF; Fulltext: PDF;
6.
Performance study for the photon measurements of the upgraded LHCf calorimeters with Gd$_2$SiO$_5$ (GSO) scintillators / Makino, Y (Nagoya U., ISEE) ; Tiberio, A (INFN, Florence ; U. Florence (main)) ; Adriani, O (INFN, Florence ; U. Florence (main)) ; Berti, E (INFN, Florence ; U. Florence (main)) ; Bonechi, L (INFN, Florence) ; Bongi, M (INFN, Florence ; U. Florence (main)) ; Caccia, Z (INFN, Catania) ; D'Alessandro, R (INFN, Florence ; U. Florence (main)) ; Del Prete, M (INFN, Florence ; U. Florence (main)) ; Detti, S (INFN, Florence) et al.
The Large Hadron Collider forward (LHCf) experiment was motivated to understand the hadronic interaction processes relevant to cosmic-ray air shower development. We have developed radiation-hard detectors with the use of Gd$_2$SiO$_5$ (GSO) scintillators for proton-proton $\sqrt{s} = 13$ TeV collisions. [...]
2017 - 22 p. - Published in : JINST 12 (2017) P03023
7.
Measurement of inclusive forward neutron production cross section in proton-proton collisions at $\sqrt{s} = 13$~TeV with the LHCf Arm2 detector / LHCf Collaboration
In this paper, we report the measurement relative to the production of forward neutrons in proton-proton collisions at $\mathrm{\sqrt{s} = 13~TeV}$ obtained using the LHCf Arm2 detector at the Large Hadron Collider. The results for the inclusive differential production cross section are presented as a function of energy in three different pseudorapidity regions: $\eta > 10.76$, $8.99 < \eta < 9.22$ and $8.81 < \eta < 8.99$. [...]
arXiv:1808.09877; CERN-EP-2018-239.- Geneva : CERN, 2018-11-12 - 27 p. - Published in : JHEP 11 (2018) 073 Article from SCOAP3: scoap3-fulltext - PDF; scoap - PDF; Draft (restricted): PDF; Fulltext: Arm2_neutrons_13TeV_fin - PDF; CERN-EP-2018-239 - PDF; 1808.09877 - PDF; External link: Rivet analyses reference
8.
CaloCube: An isotropic spaceborne calorimeter for high-energy cosmic rays. Optimization of the detector performance for protons and nuclei / Adriani, O (Florence U. ; INFN, Florence) ; Albergo, S (Catania U. ; INFN, Catania) ; Auditore, L (U. Messina (main) ; INFN, Catania) ; Basti, A (INFN, Pisa) ; Berti, E (Florence U. ; INFN, Florence) ; Bigongiari, G (U. Siena (main) ; INFN, Pisa) ; Bonechi, L (INFN, Florence) ; Bonechi, S (U. Siena (main) ; INFN, Pisa) ; Bongi, M (Florence U. ; INFN, Florence) ; Bonvicini, V (INFN, Trieste) et al.
The direct detection of high-energy cosmic rays up to the PeV region is one of the major challenges for the next generation of space-borne cosmic-ray detectors. The physics performance will be primarily determined by their geometrical acceptance and energy resolution. [...]
2017 - 7 p. - Published in : Astropart. Phys. 96 (2017) 11-17
9.
CaloCube: a novel calorimeter for high-energy cosmic rays in space / Rappoldi, A (INFN, Pavia) ; Cattaneo, P W (INFN, Pavia) ; Adriani, O (Florence U. ; INFN, Florence) ; Agnesi, A (INFN, Pavia ; U. Pavia (main)) ; Albergo, S (Catania U. ; INFN, Catania) ; Auditore, L (U. Messina (main) ; INFN, Messina) ; Basti, A (INFN, Pisa) ; Berti, E (Florence U. ; INFN, Florence) ; Bigongiari, G (U. Siena (main) ; INFN, Pisa) ; Bonechi, L (Florence U. ; INFN, Florence) et al.
CaloCube is an R&D; project borne to develop a novel calorimeter design, optimized for high-energy cosmic ray measurements in space. A small prototype made of CsI(Tl) elements has been built and tested on particle beams. [...]
2017 - 4 p. - Published in : EPJ Web Conf. 136 (2017) 02011 Fulltext: PDF; External link: Fulltext
In : 6th Roma International Workshop on Astroparticle Physics, Rome, Italy, 21 - 24 Jun 2016, pp.02011
10.
CaloCube: a novel calorimeter for high-energy cosmic rays in space / Calocube Collaboration
In order to extend the direct observation of high-energy cosmic rays up to the PeV region, highly performing calorimeters with large geometrical acceptance and high energy resolution are required. Within the constraint of the total mass of the apparatus, crucial for a space mission, the calorimeters must be optimized with respect to their geometrical acceptance, granularity and absorption depth. [...]
arXiv:1705.07027.- 2017-06-05 - 7 p. - Published in : JINST 12 (2017) C06004
Fulltext: PDF; Preprint: PDF;
In : Instrumentation for Colliding Beam Physics, Novosibirsk, Russia, 27 Feb - 3 Mar 2017, pp.C06004

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