The TOTEM Experiment is designed to measure the total proton-proton cross-section with the luminosity-independent method and to study elastic and diffractive pp scattering at the LHC. To achieve optimum forward coverage for charged particles emitted by the pp collisions in the interaction point IP5, two tracking telescopes, T1 and T2, are installed on each side of the IP in the pseudorapidity region 3.1 <= |eta| <= 6.5, and special movable beam-pipe insertions - called Roman Pots (RPs) - are placed at distances of +/- 147m and +/- 220m from IP5. This article describes in detail the working of the TOTEM detector to produce physics results in the first three years of operation and data taking at the LHC.
G., A., P., A., I., A., V., A., J., B., Bagliesi, M.G., et al. (2013). Performance of the totem detectors at the LHC. INTERNATIONAL JOURNAL OF MODERN PHYSICS A, 28(31) [10.1142/S0217751X13300469].
Performance of the totem detectors at the LHC
BAGLIESI, MARIA GRAZIA;BERRETTI, MIRKO;BOSSINI, EDOARDO;BOTTIGLI, UBALDO;CECCHI, ROBERTO;LOSURDO, LILIANA;OLIVERI, ERALDO;SCRIBANO, ANGELO;TURINI, NICOLA;
2013-01-01
Abstract
The TOTEM Experiment is designed to measure the total proton-proton cross-section with the luminosity-independent method and to study elastic and diffractive pp scattering at the LHC. To achieve optimum forward coverage for charged particles emitted by the pp collisions in the interaction point IP5, two tracking telescopes, T1 and T2, are installed on each side of the IP in the pseudorapidity region 3.1 <= |eta| <= 6.5, and special movable beam-pipe insertions - called Roman Pots (RPs) - are placed at distances of +/- 147m and +/- 220m from IP5. This article describes in detail the working of the TOTEM detector to produce physics results in the first three years of operation and data taking at the LHC.File | Dimensione | Formato | |
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https://hdl.handle.net/11365/48476
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