CERN Accelerating science

SND@LHC Notes

Najnovije dodano:
2024-02-14
17:28
Analytical Tools for the Evaluation of the AvdSND FAR Magnetic Spectrometer Performance / Scalera, Valentino (Universita Federico II e INFN Sezione di Napoli (IT)) /SND@LHC Collaboration
The Advanced SND project is an extension of the SND@LHC experiment, a compact standalone experiment designed to perform measurements with high-energy neutrinos in range 100 GeV–1 TeV produced at the LHC. A possible extension consists in the introduction of a new magnetic spectrometer (denoted as FAR detector) in the region $7.2<\eta<8.4$ meant to operate during LHC run 4. [...]
SNDLHC-NOTE-2024-001.- Geneva : CERN, 2024 Fulltext: PDF;

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2023-08-30
11:24
Measurement of the muon flux with the emulsion target at SND@LHC / Iuliano, Antonio (Universita Federico II e INFN Sezione di Napoli (IT)) /SND@LHC Collaboration
SND@LHC is a compact and stand-alone experiment, located 480 m downstream of the ATLAS interaction point, in the TI18 tunnel. It employs an hybrid target with tungsten plates, interleaved with emulsion films and alternated with electronic trackers, followed downstream by a calorimeter and muon system [...]
SNDLHC-NOTE-2023-003.- Geneva : CERN, 2023 Fulltext: PDF;

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2023-08-11
12:00
Emulsion Reconstruction Analysis in SND@LHC / Krishnan, Tanvi
Improving the emulsion reconstruction efficiency in SND@LHC, a compact neutrino experiment in the LHC, is important to ensuring faster data processing and more efficient physics analyses. [...]
CERN-STUDENTS-Note-2023-027.
- 2023.
Access to fulltext

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2023-06-23
14:58
Observation of muon neutrino interactions at SND@LHC / Vilela, Cristovao (LIP - Laboratorio de Instrumentação e Física Experimental de Partículas (PT)) ; Ferrillo, Martina (University of Zurich (CH)) ; Centanni, Daniele (Universita Federico II e INFN Sezione di Napoli (IT)) ; Ilieva, Simona Ilieva (University of Sofia - St. Kliment Ohridski (BG)) ; Di Crescenzo, Antonia (Universita Federico II e INFN Sezione di Napoli (IT)) /SND@LHC collaboration
SND@LHC is a compact, standalone experiment located at the Large Hadron Collider (LHC), 480~m downstream of the ATLAS interaction point. It was designed to measure neutrinos produced at the LHC in the pseudo-rapidity region of $7.2 < \eta < 8.4$, which is inaccessible to the other LHC experiments. [...]
SNDLHC-NOTE-2023-002.- Geneva : CERN, 2023 Fulltext: PDF;

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2023-05-18
10:47
Measurement of the muon flux at SND@LHC / Ilieva, Simona Ilieva (University of Sofia - St. Kliment Ohridski (BG)) /SND@LHC Collaboration
The Scattering and Neutrino Detector at the LHC (SND@LHC) is a compact standalone experiment, which started taking data at the beginning of Run 3 of the LHC. The experiment is designed to perform measurements with high-energy neutrinos in range \mbox{100~GeV--1~TeV} produced at the LHC in a previously unexplored pseudo-rapidity range of \mbox{$7.2<\eta<8.4$} [...]
SNDLHC-NOTE-2023-001.- Geneva : CERN, 2023 Fulltext: PDF;

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2021-02-24
22:08
Answers to referees on SND@LHC TP / Ahdida, C ; Albanese, R ; Alexandrov, A ; Andreini, M ; Anokhina, A ; Bay, A ; Bestmann, P ; Betancourt, C ; Bezshyiko, I ; Blanco, A et al.
Answers to the LHCC referees concerning the SND@LHC Technical Proposal
CERN-LHCC-2021-004 ; LHCC-P-016-ADD-1.
- 2021.
Fulltext - Original Document (LHCC-P-016)

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2021-01-22
14:38
SND@LHC - Scattering and Neutrino Detector at the LHC / Ahdida, C ; Albanese, R ; Alexandrov, A ; Andreini, M ; Anokhina, A ; Bay, A ; Bestmann, P ; Betancourt, C ; Bezshyiko, I ; Blanco, A et al.
SND@LHC is a proposed, compact and stand-alone experiment to perform measurements with neutrinos produced at the LHC in an hitherto unexplored pseudo-rapidity region of $7.2 < \eta < 8.6$, complementary to all the other experiments at the LHC. [...]
CERN-LHCC-2021-003 ; LHCC-P-016.
- 2021.
Fulltext

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2020-02-14
23:23
SND@LHC / SHiP Collaboration
We propose to build and operate a detector that, for the first time, will measure the process $p p \rightarrow \nu X$ at the LHC and search for feebly interacting particles (FIPs) in an unexplored domain. [...]
arXiv:2002.08722 ; CERN-LHCC-2020-002 ; LHCC-I-035 ; LHCC-I-035.
- 2020. - 42 p.
Fulltext - Fulltext

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