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4521“…The system has been expanded during the LS1 shutdown with added features. The upgraded system has enhanced performance and more robust synchronization to the beam and accelerator timing system. …”
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4522por Kim, D, Rinella, G Aglieri, Cavicchioli, C, Chanlek, N, Collu, A, Degerli, Y, Dorokhov, A, Flouzat, C, Gajanana, D, Gao, C, Guilloux, F, Hillemanns, H, Hristozkov, S, Junique, A, Keil, M, Kofarago, M, Kugathasan, T, Kwon, Y, Lattuca, A, Mager, M, Sielewicz, K M, Tobon, C A Marin, Marras, D, Martinengo, P, Mazza, G, Mugnier, H, Musa, L, Pham, T H, Puggioni, C, Reidt, F, Riedler, P, Rousset, J, Siddhanta, S, Snoeys, W, Song, M, Usai, G, Hoorne, J W Van, Yang, PEnlace del recurso
Publicado 2016
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4523por Chanal, H“…A new detector made of scintillating fibres read out by arrays of silicon photomultipliers (SiPM) is planned for the LHCb detector upgrade, foreseen in 2018/19. The development of dedicated readout electronics in the harsh LHC environment leads to challenges. …”
Publicado 2016
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4524por Monteil, E, Demaria, N, Pacher, L, Rivetti, A, Rolo, M Da Rocha, Rotondo, F, Leng, C“…The upgrade of the silicon pixel sensors for the HL-LHC experiments requires the development of new readout integrated circuits due to unprecedented radiation levels, very high hit rates and increased pixel granularity. …”
Publicado 2016
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4525por Willering, G, Bajko, M, Bordini, B, Bottura, L, Fiscarelli, L, Izquierdo Bermudez, S, Karppinen, M, Löffler, C, Perez, J C, de Rijk, G, Savary, F“…For the upgrade of the LHC in LS2 and for the High Luminosity upgrade in LS3, a few 15-m Nb-Ti main dipole magnets are foreseen to be replaced by two 5.5-m-long Nb$_{3}$Sn dipoles each. …”
Publicado 2016
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4526por Enomoto, S, Sugano, M, Nakamoto, T, Kawamata, H, Okada, R, Okada, N, Higashi, N, Ogitsu, T, Sasaki, K, Kimura, N, Ikemoto, Y, Musso, A, Xu, Q, Todesco, E“…The High Energy Accelerator Research Organization (KEK) has been developing the beam separation dipole magnet for the High Luminosity Large Hadron Collider (HL-LHC) upgrade. The magnet has a coil aperture of 150 mm, using Nb-Ti superconducting cable, and a dipole magnetic field of 5.6 T will be generated at 12 kA, at 1.9 K, to provide the field integral of 35 T·m. …”
Publicado 2016
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4527por Calderini, G, Bagolini, A, Beccherle, R, Bomben, M, Boscardin, M, Bosisio, L, Chauveau, J, Giacomini, G, La Rosa, A, Marchiori, G, Zorzi, N“…In view of the LHC upgrade phases towards the High Luminosity LHC (HL-LHC), the ATLAS experiment plans to upgrade the Inner Detector with an all-silicon system. …”
Publicado 2016
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4528por Mori, R, Allport, P P, Baca, M, Broughton, J, Chisholm, A, Nikolopoulos, K, Pyatt, S, Thomas, J P, Wilson, J A, Kierstead, J, Kuczewski, P, Lynn, D, Arratia-Munoz, M I, Hommels, L B A, Ullan, M, Fleta, C, Fernandez-Tejero, J, Bloch, I, Gregor, I M, Lohwasser, K, Poley, L, Tackmann, K, Trofimov, A, Yildirim, E, Hauser, M, Jakobs, K, Kuehn, S, Mahboubi, K, Parzefall, U, Clark, A, Ferrere, D, Sevilla, S Gonzalez, Ashby, J, Blue, A, Bates, R, Buttar, C, Doherty, F, McMullen, T, McEwan, F, O'Shea, V, Kamada, S, Yamamura, K, Ikegami, Y, Nakamura, K, Takubo, Y, Unno, Y, Takashima, R, Chilingarov, A, Fox, H, Affolder, A A, Casse, G, Dervan, P, Forshaw, D, Greenall, A, Wonsak, S, Wormald, M, Cindro, V, Kramberger, G, Mandić, I, Mikuž, M, Gorelov, I, Hoeferkamp, M, Palni, P, Seidel, S, Taylor, A, Toms, K, Wang, R, Hessey, N P, Valencic, N, Hanagaki, K, Dolezal, Z, Kodys, P, Bohm, J, Stastny, J, Mikestikova, M, Bevan, A, Beck, G, Milke, C, Domingo, M, Fadeyev, V, Galloway, Z, Hibbard-Lubow, D, Liang, Z, Sadrozinski, H F -W, Seiden, A, To, K, French, R, Hodgson, P, Marin-Reyes, H, Parker, K, Jinnouchi, O, Hara, K, Sato, K, Sato, K, Hagihara, M, Iwabuchi, S, Bernabeu, J, Civera, J V, Garcia, C, Lacasta, C, Marti i Garcia, S, Rodriguez, D, Santoyo, D, Solaz, C, Soldevila, U“…The upgrade to the High-Luminosity LHC foreseen in about ten years represents a great challenge for the ATLAS inner tracker and the silicon strip sensors in the forward region. …”
Publicado 2016
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4529“…The beam crabbing proposed for the LHC High Luminosity Upgrade requires two crabbing systems operating in both horizontal and vertical planes. …”
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4530Upgrade of the beam extraction system of the GTS-LHC electron cyclotron resonance ion source at CERN“…Details of the upgrade and results of a beam dynamics study of the extraction region and LEBT modifications will be presented.…”
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4531por Yao, L, Polychronakos, V, Chen, H, Chen, K, Xu, H, Martoiu, S, Felt, N, Lazovich, T“…The ART Data Driver Card (ADDC) will be used in the ATLAS muon upgrade to process and transmit the Address in Real Time (ART) signals, which are generated by the front end chip (VMM) to indicate the location of the first above-threshold event. …”
Publicado 2017
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4532“…The High Performance Time to Digital Converter (HPTDC), a multi-channel ASIC designed by the CERN Microelectronics group, has been proposed for the digitization of the thin-Resistive Plate Chambers (tRPC) in the ATLAS Muon Spectrometer Phase-1 upgrade project. These chambers, to be staged for higher luminosity LHC operation, will increase trigger acceptance and reduce or eliminate the fake muon trigger rates in the barrel-endcap transition region, corresponding to pseudo-rapidity range 1<|η|<1.3. …”
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4533por Kuehn, S, Benítez, V, Fernández-Tejero, J, Fleta, C, Lozano, M, Ullán, M, Lacker, H, Rehnisch, L, Sperlich, D, Ariza, D, Bloch, I, Díez, S, Gregor, I, Keller, J, Lohwasser, K, Poley, L, Prahl, V, Zakharchuk, N, Hauser, M, Jakobs, K, Mahboubi, K, Mori, R, Parzefall, U, Bernabéu, J, Lacasta, C, Marco-Hernandez, R, Santoyo, D, Contell, C Solaz, Serrano, U Soldevila, Affolder, T, Greenall, A, Gallop, B, Phillips, P W“…For the High-Luminosity upgrade of the Large Hadron Collider an increased instantaneous luminosity of up to 7.5 ⋅ $10^{34} cm^{−2} s^{−1}$, leading to a total integrated luminosity of up to 3000 $fb^{−1}$, is foreseen. …”
Publicado 2017
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4534por Barnes, M J, Adraktas, A, Bregliozzi, G, Goddard, B, Ducimetière, L, Salvant, B, Sestak, J, Vega Cid, L, Weterings, W, Yin Vallgren, C“…An extensive program of studies was launched and significant upgrades were carried out during Long Shutdown 1 (LS 1). …”
Publicado 2017
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4535por Zecchin, Marco“…The triple-GEM detectors are a candidate technology to instrument the forward region of the CMS muon spectrometer, during the upgrade of LHC scheduled to achieve high luminosity (2 ×1034 cm−2 s −1 ). …”
Publicado 2017
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4536por Lucchetti, Federico“…The purpose of this work is to study Triple GEM detectors for the upgrade in the 1.6 < |⌘| < 2.4 part of the muon spectrometer in CMS in order to increase the redundancy in this region. …”
Publicado 2017
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4537por Venditti, Rosamaria“…Thanks to their excellent spatial and time resolution, high particle rate capability and a close to 100% detection efficiency, GEM detectors meet all requirements for the upgrade of the CMS end cap. 144 large area trapezoidal triple-GEM detectors will be installed in 2019 in the first station of the end cap of CMS (Compact Muon Solenoid) experiment at the LHC. …”
Publicado 2017
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4538por Andreotti, M, Baldini, W, Baszczykc, M, Calabrese, R, Candelori, A, Carniti, P, Cassina, L, Cotta Ramusino, A, Dorosz, P, Fiorini, M, Giachero, A, Gotti, C, Kucewicz, W, Luppi, E, Maino, M, Malaguti, R, Mattiazzo, S, Minzoni, L, Pappalardo, L L, Pessina, G, Silvestrin, L, Tomassetti, L“…The CLARO8 chip has been designed for single-photon counting in the upgraded RICH detector of the LHCb experiment at CERN. …”
Publicado 2017
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4539por Bassalat, Ahmed“…For Run 2 of the LHC a fourth, innermost Pixel Detector layer on a smaller radius beampipe has been installed in the ATLAS Detector to add redundancy against radiation damage ofthe current Pixel Detector and to ensure a high quality tracking and b-tagging performance ofthe Inner Detector over the coming years until the High Luminosity Upgrade. State of the artcomponents have been produced and assembled onto support structures known as staves overthe last two years. …”
Publicado 2018
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4540por Deng, Binwei, Xiao, Le, Zhao, Xiandong, Baker, Emily, Gong, Datao, Guo, D., He, Huiqin, Hou, Suen, Liu, Chonghan, Liu, Tiankuan, Sun, Quan, Thomas, James, Wang, Jian, Xiang, Annie C., Yang, Dongxu, Ye, Jingbo, Zhou, Wei“…Two optical data link data transmission Application Specific Integrated Circuits (ASICs), the baseline and its backup, have been designed for the ATLAS Liquid Argon (LAr) Calorimeter Phase-I trigger upgrade. The latency of each ASIC and that of its corresponding receiver implemented in a back-end Field-Programmable Gate Array (FPGA) are critical specifications. …”
Publicado 2020
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