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3501“…The LHC has planned a series of upgrades culminating in the High Luminosity LHC which will have an average luminosity 5-7 times larger than the nominal Run 2 value. …”
Enlace del recurso
Enlace del recurso
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3502
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3503por Moschovakos, Paris“…The upgrades of the LHC accelerator and the experiments in 2019/20 and 2023/24 will increase the instantaneous and integrated luminosity, but also will drastically increase the data and trigger rates. …”
Publicado 2017
Enlace del recurso
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3504por Dinkespiler, Bernard“…The upgrade of the Large Hadron Collider (LHC) scheduled for shut-down period of 2018-2019, referred to as Phase-I upgrade, will increase the instantaneous luminosity to about three times the design value. …”
Publicado 2017
Enlace del recurso
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3505por Lazaridis, Christos, Bologna, Simone, Bunkowski, Karol, Codispoti, Giuseppe, Dirkx, Glenn, Ghabrous Larrea, Carlos, Lingemann, Joschka, Kreczko, Lukasz, Thea, Alessandro, Williams, Tom“…By increasing the proportion of common software, the upgrade systems software will require less manpower for development and maintenance. …”
Publicado 2017
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Enlace del recurso
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3506por Dragicevic, M., Friedl, M., Hrubec, J., Steininger, H., Gädda, A., Härkönen, J., Lampén, T., Luukka, P., Peltola, T., Tuominen, E., Tuovinen, E., Winkler, A., Eerola, P., Tuuva, T., Baulieu, G., Boudoul, G., Caponetto, L., Combaret, C., Contardo, D., Dupasquier, T., Gallbit, G., Lumb, N., Mirabito, L., Perries, S., Donckt, M.Vander, Viret, S., Bonnin, C., Charles, L., Gross, L., Hosselet, J., Tromson, D., Feld, L., Karpinski, W., Klein, K., Lipinski, M., Pierschel, G., Preuten, M., Rauch, M., Wlochal, M., Aldaya, M., Asawatangtrakuldee, C., Beernaert, K., Bertsche, D., Contreras-Campana, C., Eckerlin, G., Eckstein, D., Eichhorn, T., Gallo, E., Garcia, J.Garay, Hansen, K., Haranko, M., Harb, A., Hauk, J., Keaveney, J., Kalogeropoulos, A., Kleinwort, C., Lohmann, W., Mankel, R., Maser, H., Mittag, G., Muhl, C., Mussgiller, A., Pitzl, D., Reichelt, O., Savitskyi, M., Schütze, P., Sola, V., Spannagel, S., Walsh, R., Zuber, A., Biskop, H., Buhmann, P., Centis-Vignali, M., Garutti, E., Haller, J., Hoffmann, M., Klanner, R., Lapsien, T., Matysek, M., Perieanu, A., Scharf, Ch., Schleper, P., Schmidt, A., Schwandt, J., Sonneveld, J., Steinbrück, G., Vormwald, B., Wellhausen, J., Abbas, M., Amstutz, C., Barvich, T., Barth, Ch., Boegelspacher, F., Boer, W.De, Butz, E., Casele, M., Colombo, F., Dierlamm, A., Freund, B., Hartmann, F., Heindl, S., Husemann, U., Kornmeyer, A., Kudella, S., Muller, Th., Simonis, H.J., Steck, P., Weber, M., Weiler, Th., Kiss, T., Siklér, F., Tölyhi, T., Veszprémi, V., Cariola, P., Creanza, D., Palma, M.De, Robertis, G.De, Fiore, L., Franco, M., Loddo, F., Sala, G., Silvestris, L., Maggi, G., My, S., Selvaggi, G., Albergo, S., Cappello, G., Costa, S., Mattia, A.Di, Giordano, F., Potenza, R., Saizu, M.A., Tricomi, A., Tuve, C., Focardi, E., Dinardo, M.E., Fiorendi, S., Gennai, S., Malvezzi, S., Manzoni, R.A., Menasce, D., Moroni, L., Pedrini, D., Azzi, P., Bacchetta, N., Bisello, D., Dall'Osso, M., Pozzobon, N., Tosi, M., Solestizi, L.Alunni, Biasini, M., Bilei, G.M., Cecchi, C., Checcucci, B., Ciangottini, D., Fanò, L., Gentsos, C., Ionica, M., Leonardi, R., Manoni, E., Mantovani, G., Marconi, S., Mariani, V., Menichelli, M., Modak, A., Morozzi, A., Moscatelli, F., Passeri, D., Placidi, P., Postolache, V., Rossi, A., Saha, A., Santocchia, A., Storchi, L., Spiga, D., Androsov, K., Azzurri, P., Bagliesi, G., Basti, A., Boccali, T., Borrello, L., Bosi, F., Castaldi, R., Ceccanti, M., Ciocci, M.A., Dell'Orso, R., Donato, S., Fedi, G., Giassi, A., Grippo, M.T., Ligabue, F., Magazzu, G., Mammini, P., Mariani, F., Mazzoni, E., Messineo, A., Moggi, A., Morsani, F., Palla, F., Palmonari, F., Profeti, A., Raffaelli, F., Ragonesi, A., Rizzi, A., Soldani, A., Spagnolo, P., Tenchini, R., Tonelli, G., Venturi, A., Verdini, P.G., Abbaneo, D., Ahmed, I., Albert, E., Auzinger, G., Berruti, G., Bonnaud, J., Daguin, J., D'Auria, A., Detraz, S., Dondelewski, O., Engegaard, B., Faccio, F., Frank, N., Gill, K., Honma, A., Kornmayer, A., Labaza, A., Manolescu, F., McGill, I., Mersi, S., Michelis, S., Onnela, A., Ostrega, M., Pavis, S., Peisert, A., Pernot, J.F., Petagna, P., Postema, H., Rapacz, K., Sigaud, C., Tropea, P., Troska, J., Tsirou, A., Vasey, F., Verlaat, B., Vichoudis, P., Zwalinski, L., Bachmair, F., Becker, R., di Calafiori, D., Casal, B., Berger, P., Djambazov, L., Donega, M., Grab, C., Hits, D., Hoss, J., Kasieczka, G., Lustermann, W., Mangano, B., Marionneau, M., Arbol, P.Martinez Ruiz del, Masciovecchio, M., Meinhard, M., Perozzi, L., Roeser, U., Starodumov, A., Tavolaro, V., Wallny, R., Zhu, D., Amsler, C., Bösiger, K., Caminada, L., Canelli, F., Chiochia, V., de Cosa, A., Galloni, C., Hreus, T., Kilminster, B., Lange, C., Maier, R., Ngadiuba, J., Pinna, D., Robmann, P., Taroni, S., Yang, Y., Bertl, W., Deiters, K., Erdmann, W., Horisberger, R., Kaestli, H.C., Kotlinski, D., Langenegger, U., Meier, B., Rohe, T., Streuli, S., Chen, P.H., Dietz, C., Fiori, F., Grundler, U., Hou, W.S., Lu, R.S., Moya, M., Tsai, J.F., Tzeng, Y.M., Cussans, D., Goldstein, J., Grimes, M., Newbold, D., Hobson, P., Reid, I.D., Auzinger, G., Bainbridge, R., Dauncey, P., Hall, G., James, T., Magnan, A.M., Pesaresi, M., Raymond, D.M., Uchida, K., Durkin, T., Harder, K., Shepherd-Themistocleous, C., Chertok, M., Conway, J., Conway, R., Flores, C., Lander, R., Pellett, D., Ricci-Tam, F., Squires, M., Thomson, J., Yohay, R., Burt, K., Ellison, J., Hanson, G., Olmedo, M., Si, W., Yates, B.R., Dominguez, A., Bartek, R., Bentele, B., Cumalat, J.P., Ford, W.T., Jensen, F., Johnson, A., Krohn, M., Leontsinis, S., Mulholland, T., Stenson, K., Wagner, S.R., Apresyan, A., Bolla, G., Burkett, K., Butler, J.N., Canepa, A., Cheung, H.W.K., Christian, D., Cooper, W.E., Deptuch, G., Derylo, G., Gingu, C., Grünendahl, S., Hasegawa, S., Hoff, J., Howell, J., Hrycyk, M., Jindariani, S., Johnson, M., Kahlid, F., Kwan, S., Lei, C.M., Lipton, R., De Sá, R.Lopes, Liu, T., Los, S., Matulik, M., Merkel, P., Nahn, S., Prosser, A., Rivera, R., Schneider, B., Sellberg, G., Shenai, A., Siehl, K., Spiegel, L., Tran, N., Uplegger, L., Voirin, E., Berry, D.R., Chen, X., Ennesser, L., Evdokimov, A., Gerber, C.E., Makauda, S., Mills, C., Gonzalez, I.D.Sandoval, Alimena, J., Antonelli, L.J., Francis, B., Hart, A., Hill, C.S., Parashar, N., Stupak, J., Bortoletto, D., Bubna, M., Hinton, N., Jones, M., Miller, D.H., Shi, X., Baringer, P., Bean, A., Khalil, S., Kropivnitskaya, A., Majumder, D., Schmitz, E., Wilson, G., Ivanov, A., Mendis, R., Mitchell, T., Skhirtladze, N., Taylor, R., Anderson, I., Fehling, D., Gritsan, A., Maksimovic, P., Martin, C., Nash, K., Osherson, M., Swartz, M., Xiao, M., Acosta, J.G., Cremaldi, L.M., Oliveros, S., Perera, L., Summers, D., Bloom, K., Claes, D.R., Fangmeier, C., Suarez, R.Gonzalez, Monroy, J., Siado, J., Bartz, E., Gershtein, Y., Halkiadakis, E., Kyriacou, S., Lath, A., Nash, K., Osherson, M., Schnetzer, S., Stone, R., Walker, M., Malik, S., Norberg, S., Vargas, J.E.Ramirez, Alyari, M., Dolen, J., Godshalk, A., Harrington, C., Iashvili, I., Kharchilava, A., Nguyen, D., Parker, A., Rappoccio, S., Roozbahani, B., Alexander, J., Chaves, J., Chu, J., Dittmer, S., McDermott, K., Mirman, N., Rinkevicius, A., Ryd, A., Salvati, E., Skinnari, L., Soffi, L., Tao, Z., Thom, J., Tucker, J., Zientek, M., Akgün, B., Ecklund, K.M., Kilpatrick, M., Nussbaum, T., Zabel, J., D'Angelo, P., Johns, W., Rose, K.“…A new pixel detector for the CMS experiment is being built, owing to the instantaneous luminosities anticipated for the Phase I Upgrade of the LHC. The new CMS pixel detector provides four-hit tracking while featuring a reduced material budget as well as new cooling and powering schemes. …”
Publicado 2016
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3507por Moschovakos, Paris“…The upgrades of the LHC accelerator and the experiments in 2019/20 and 2023/24 will increase the instantaneous and integrated luminosity, but also will drastically increase the data and trigger rates. …”
Publicado 2017
Enlace del recurso
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3508
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3509
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3510por Camplani, Alessandra“…The upgrade of the Large Hadron Collider (LHC) scheduled for shut-down period of 2018-2019, referred to as Phase-I upgrade, will increase the instantaneous luminosity to about three times the design value. …”
Publicado 2017
Enlace del recurso
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3511
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3512
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3513
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3514“…High-sensitive double-gap phenolic Resistive Plate Chambers are studied for the Phase-2 upgrade of the CMS muon system at high pseudorapidity $\eta$. …”
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3515“…High-sensitive double-gap phenolic Resistive Plate Chambers are studied for the Phase-2 upgrade of the CMS muon system at high pseudorapidity $\eta$. …”
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3516por Camplani, Alessandra“…The upgrade of the Large Hadron Collider (LHC) scheduled for the Long Shut-down period of 2019-2020 (LS2), referred to as Phase-I upgrade, will increase the instantaneous luminosity to about three times the design value. …”
Publicado 2017
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3517por Vallier, Alexis“…The upgrade of the Large Hadron Collider (LHC) scheduled for shut-down period of 2018-2019, referred to as Phase-I upgrade, will increase the instantaneous luminosity to about three times the design value. …”
Publicado 2017
Enlace del recurso
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3518por Iengo, Paolo“…The upgraded detector will consist of eight layers each of Resistive Micromegas (MM) and small-strip Thin Gap Chambers (sTGC) together forming the ATLAS New Small Wheels. …”
Publicado 2017
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3519por Dinardo, Mauro“…The High Luminosity upgrade of the CERN-LHC (HL-LHC) demands for a new high-radiation tolerant solid-state pixel sensor capable of surviving fluencies up to a few $10^{16}$~ particles/cm$^2$ at $\sim$3~cm from the interaction point. …”
Publicado 2017
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Enlace del recurso
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3520