CERN Accelerating science

SHiP Internal Notes

Posledne pridané:
Deterministic trace computation of charged particle in three dimensions / Wertelaers, Piet (CERN) /SHiP Collaboration
Establishing the curved trajectory of a charged particle in a magnetic field, becomes a stochastic affair as soon as the particle interacts with material, and then, Monte Carlo simulation is the traditional computational method. Here, we develop a deterministic competitor. [...]
CERN-SHiP-INT-2022-002.- Geneva : CERN, 2022

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How the distance of the cavern walls affects the background rates / Ferro-Luzzi, Massimiliano (CERN) /SHiP Collaboration
to be added
CERN-SHiP-INT-2022-001.- Geneva : CERN, 2022

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Interpolating magnetic field data onto a three-dimensional regular grid / Wertelaers, Piet (CERN) /SHiP collaboration
Magnetic field data do not always exist on the exact locations of the regular grid used in physics simulations, in which case interpolation must be performed. The “general” method makes no a priori assumptions of the nature of the primary data ; they can be measurements. [...]
CERN-SHiP-INT-2021-005.- Geneva : CERN, 2021 Fulltext: PDF;

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Multiple scattering: variance of the transverse offset after an arbitrary number of media / Ferro-Luzzi, Massimiliano (CERN) /SHiP collaboration
When a relativistic charged particle traverses a medium, it undergoes multiple (small angle) scattering processes. In the 2-dimensional case (planar), such process is often simulated using two uncorrelated Gaussian-distributed random numbers to generate the correlated transverse deflections (offsets and angles) through a medium. [...]
CERN-SHiP-INT-2021-004.- Geneva : CERN, 2021 Fulltext: PDF;

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BDF/SHiP muon deflection - First ideas about an integrated apparatus with superconducting main magnet / Wertelaers, Piet (CERN) ; Ferro-Luzzi, Massimiliano (CERN) /SHiP Collaboration
An order 20 m long superconducting magnet would largely suffice to deflect the highest-energy Target-produced muons, and moreover, it could lodge part of the Scattering Neutrino Detector, thus circumventing the need of a separate magnet. The idea of a preceding magnetized Hadron Stopper is kept. [...]
CERN-SHiP-INT-2021-003.- Geneva : CERN, 2021 Fulltext: PDF;

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SHiP Hidden Sector Decay Vessel - Alternative concept / Wertelaers, Piet (CERN) /SHiP Collaboration
The current baseline concept for the Decay Vacuum Vessel is driven by difficult requirements, namely the bearing of a liquid scintillator, and the need to remain very narrow. As a result, the vessel has issues, with tolerance management, and with flexibility problematic for connection to the Spectrometer Vessel as currently conceived. [...]
CERN-SHiP-INT-2021-002.- Geneva : CERN, 2021 Internal note: PDF;

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SHiP spectrometer vacuum tank - First analysis of three-dimensional finite element shell model / Wertelaers, Piet (CERN) /SHiP Collaboration
The Vessel is currently conceived as a rectangular matchbox of thin sheets and stiffeners. The assembly is with very thin fillet welds, to keep weld deformation small. [...]
CERN-SHiP-INT-2021-001.- Geneva : CERN, 2021 Main document: PDF;

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Cemented pack concept for the SHiP spectrometer straw tracker / Ferro-Luzzi, Massimiliano (CERN) ; Wertelaers, Piet (CERN) /SHiP Collaboration
Two design concepts already exist. A novel and third, treated in this Note, is based on the PANDA and COSY-TOF Trackers. [...]
CERN-SHiP-INT-2020-003.- Geneva : CERN, 2020 main document 2021-02-02: PDF;

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SST 2017 test beam: drift time distribution analysis / Sukhonos, Daniil (CERN) /SHiP Collaboration
A prototype 2 cm diameter, 2 m long straw detector was tested at the CERN SPS H2 beam line in October 2017. Several edge finding methods are explored and compared for the analysis of the shape of the drift time distributions. [...]
CERN-SHiP-INT-2020-002.- Geneva : CERN, 2020 PDF version created on 2020-10-26: PDF;

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SHiP Common Detector Electronics / Breton, Dominique Robert (Université Paris-Saclay (FR)) ; Jonker, Michael (CERN) ; Maalmi, Jihane (Université Paris-Saclay (FR)) /SHiP Collaboration
This document outlines the objectives of the SHiP common electronics. It describes the Global Strategy of the SHiP readout electronics and its Functional Implementation. [...]
CERN-SHiP-INT-2020-001.- Geneva : CERN, 2020 Fulltext: PDF;

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