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1061por Abbaneo, D“…The Compact Muon Solenoid (CMS) detector is one of the two general-purpose detectors at the CERN LHC. …”
Publicado 2016
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1062por Dev, N, Jessop, C, Meng, F, Marinelli, N, Taroni, S, Beaudette, F, Cadamuro, L, Davignon, O, Romanteau, T, Strebler, T, Zabi, A, Sauvan, J B, Marrouche, J, Wardle, N, Aggleton, R, Ball, F, Brooke, J, Newbold, D, Paramesvaran, S, Smith, D, Taylor, J, Baber, M, Bundock, A, Citron, M, Elwood, A, Hall, G, Iles, G, Laner, C, Penning, B, Rose, A, Shtipliyski, A, Tapper, A, Durkin, T, Harder, K, Harper, S, Shepherd-Themistocleous, C, Thea, A, Williams, T, Neu, C, Sinthuprasith, T, Xia, F“…The Compact Muon Solenoid (CMS) employs a sophisticated two-level online triggering system that has a rejection factor of up to $10^5$. …”
Publicado 2017
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1063por Verbruggen, Bert“…To study the interactions at the LHC physicists use large detectors like the Compact Muon Solenoid (CMS) experiment. Due to the high energy of the collisions, top quarks will be produced at a very high rate. …”
Publicado 2018
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1064por Zghiche, Amina“…Many physics analyses using the Compact Muon Solenoid (CMS) detector at the LHC require accurate, high resolution electron and photon energy measurements. …”
Publicado 2019
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1065por Arcidiacono, Roberta“…The electromagnetic calorimeter of the Compact Muon Solenoid Experiment (CMS) will be upgraded for the High-Luminosity phase of the LHC, where an unprecedented number of pile-up events (up to 200 simultaneous proton-proton collisions) and a challenging increase in data rate are expected. …”
Publicado 2019
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1066por Pedraza-Morales, M.I., Han, D., Boghrati, B., Fagot, A., Gul, M., Roskas, C., Tytgat, M., Zaganidis, N., Fonseca De Souza, S., Santoro, A., Torres da Silva de Araujo, F., Aleksandrov, A., Hadjiiska, R., Iaydjiev, P., Rodozov, M., Shopova, M., Sultanov, G., Dimitrov, A., Litov, L., Pavlov, B., Petkov, P., Petrov, A., Qian, S.J., Yi, W., Avila, C., Cabrera, A., Carrillo, C., Segura, M., Aly, S., Assran, Y., Mahrous, A., Mohamed, A., Combaret, C., Gouzevitch, M., Grenier, G., Lagarde, F., Laktineh, I.B., Mathez, H., Mirabito, L., Shchablo, K., Bagaturia, I., Lomidze, D., Lomidze, I., Pant, L.M., Bhatnagar, V., Gupta, R., Kumari, R., Lohan, M., Singh, J.B., Amoozegar, V., Ghasemy, H., Malmir, S., Mohammadi Najafabadi, M., Abbrescia, M., Gelmi, A., Iaselli, G., Lezki, S., Pugliese, G., Benussi, L., Bianco, S., Piccolo, D., Primavera, F., Buontempo, S., Crescenzo, A., Galati, G., Fienaga, F., Orso, I., Lista, L., Meola, S., Paolucci, P., Voevodina, E., Braghieri, A., Montagna, P., Ressegotti, M., Riccardi, C., Salvini, P., Vitulo, P., Cho, S.W., Choi, S.Y., Hong, B., Lee, K.S., Lim, J.H., Park, S.K., Goh, J., Kim, T.J., Carrillo Moreno, S., Miguel Colin, O., Vasquez Valencia, F., Carpinteyro Bernardino, S., Eysermans, J., Estrada, C. Uribe, Reyes-Almanza, R., Duran-Osuna, M.C., Ramirez-Sanchez, G., Sanchez-Hernandez, A., Rabadan-Trejo, R.I., Castilla-Valdez, H., Radi, A., Hoorani, H., Muhammad, S., Shah, M.A., Crotty, I.“…The Muon Upgrade Phase II of the Compact Muon Solenoid (CMS) aims to guarantee the optimal conditions of the present system and extend the η coverage to ensure a reliable system for the High Luminosity Large Hadron Collider (HL-LHC) period. …”
Publicado 2018
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1067por Voevodina, E., Fagot, A., Gul, M., Roskas, C., Tytgat, M., Zaganidis, N., Souza, S.Fonseca De, Santoro, A., da Silva de Araujo, F.Torres, Aleksandrov, A., Hadjiiska, R., Iaydjiev, P., Rodozov, M., Shopova, M., Sultanov, G., Dimitrov, A., Litov, L., Pavlov, B., Petkov, P., Petrov, A., Qian, S.J., Han, D., Yi, W., Avila, C., Cabrera, A., Carrillo, C., Segura, M., Aly, S., Assran, Y., Mahrous, A., Mohamed, A., Combaret, C., Gouzevitch, M., Grenier, G., Lagarde, F., Laktineh, I.B., Mathez, H., Mirabito, L., Shchablo, K., Bagaturia, I., Lomidze, D., Lomidze, I., Pant, L.M., Bhatnagar, V., Gupta, R., Kumari, R., Lohan, M., Singh, J.B., Amoozegar, V., Boghrati, B., Ghasemy, H., Malmir, S., Najafabadi, M.Mohammadi, Abbrescia, M., Gelmi, A., Iaselli, G., Lezki, S., Pugliese, G., Benussi, L., Bianco, S., Piccolo, D., Primavera, F., Buontempo, S., Crescenzo, A., Galati, G., Fienaga, F., Orso, I., Lista, L., Meola, S., Paolucci, P., Braghieri, A., Montagna, P., Ressegotti, M., Riccardi, C., Salvini, P., Vitulo, P., Cho, S.W., Choi, S.Y., Hong, B., Lee, K.S., Lim, J.H., Park, S.K., Goh, J., Kim, T.J., Moreno, S.Carrillo, Colin, O.Miguel, Valencia, F.Vazquez, Bernardino, S.Carpinteyro, Eysermans, J., Pedraza, I., Estrada, C.Uribe, Reyes-Almanza, R., Duran-Osuna, M.C., Ramirez-Garcia, M., Ramirez-Sanchez, G., Sanchez-Hernandez, A., Rabadan-Trejo, R.I., Castilla-Valdez, H., Radi, A., Hoorani, H., Muhammad, S., Shah, M.A., Crotty, I.“…The high pseudorapidity (η) region of the Compact Muon Solenoid (CMS) muon system is covered by Cathode Strip Chambers only and lacks redundant coverage despite the fact that it is a challenging region for muons in terms of backgrounds and momentum resolution. …”
Publicado 2019
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1068por Meola, Sabino, Samalan, A., Tytgat, M., Zaganidis, N., Alves, G.A., Marujo, F., Torres da Silva de Araujo, F., Da Costa, E.M., De Jesus Damiao, D., Nogima, H., Santoro, A., Fonseca De Souza, S., Aleksandrov, A., Hadjiiska, R., Iaydjiev, P., Rodozov, M., Shopova, M., Sultanov, G., Bonchev, M., Dimitrov, A., Litov, L., Pavlov, B., Petkov, P., Petrov, A., Qian, S.J., Cao, P., Kou, H., Liu, Z., Song, J., Zhao, J., Bernal, C., Cabrera, A., Fraga, J., Sarkar, A., Elsayed, S., Assran, Y., El Sawy, M., Mahmoud, M.A., Mohammed, Y., Combaret, C., Gouzevitch, M., Grenier, G., Laktineh, I., Mirabito, L., Shchablo, K., Bagaturia, I., Lomidze, D., Lomidze, I., Bhatnagar, V., Gupta, R., Kumari, P., Singh, J., Amoozegar, V., Boghrati, B., Ebraimi, M., Ghasemi, R., Mohammadi Najafabadi, M., Zareian, E., Abbrescia, M., Aly, R., Elmetenawee, W., De Filippis, N., Gelmi, A., Iaselli, G., Leszki, S., Loddo, F., Margjeka, I., Pugliese, G., Ramos, D., Benussi, L., Bianco, S., Piccolo, D., Buontempo, S., Di Crescenzo, A., Fienga, F., De Lellis, G., Lista, L., Paolucci, P., Braghieri, A., Salvini, P., Montagna, P., Riccardi, C., Vitulo, P., Francois, B., Kim, T.J., Park, J., Choi, S.Y., Hong, B., Lee, K.S., Goh, J., Lee, H., Eysermans, J., Estrada, C. Uribe, Pedraza, I., Castilla-Valdez, H., Sanchez-Hernandez, A., Mondragon Herrera, C.A., Perez Navarro, D.A., Sanchez, G.A. Ayala, Carrillo, S., Vazquez, E., Radi, A., Ahmad, A., Asghar, I., Hoorani, H., Muhammad, S., Shah, M.A., Crotty, I.“…As part of the Compact Muon Solenoid experiment Phase-II upgrade program, new resistive plate chambers will be installed in the region at low angle with respect to the beam collision axis, in order to improve the detection of muons with a low transverse momentum. …”
Publicado 2020
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1069por Shumka, E., Samalan, A., Tytgat, M., Sawy, M. El, Alves, G.A., Marujo, F., Coelho, E.A., Da Costa, E.M., Nogima, H., Santoro, A., De Souza, S. Fonseca, De Jesus Damiao, D., Thiel, M., Mota Amarilo, K., Filho, M. Barroso Ferreira, Aleksandrov, A., Hadjiiska, R., Iaydjiev, P., Rodozov, M., Shopova, M., Soultanov, G., Dimitrov, A., Litov, L., Pavlov, B., Petkov, P., Petrov, A., Qian, S.J., Kou, H., Liu, Z.-A., Zhao, J., Song, J., Hou, Q., Diao, W., Cao, P., Avila, C., Barbosa, D., Cabrera, A., Florez, A., Fraga, J., Reyes, J., Assran, Y., Mahmoud, M.A., Mohammed, Y., Crotty, I., Laktineh, I., Grenier, G., Gouzevitch, M., Mirabito, L., Shchablo, K., Bagaturia, I., Lomidze, I., Tsamalaidze, Z., Amoozegar, V., Boghrati, B., Ebraimi, M., Mohammadi Najafabadi, M., Zareian, E., Abbrescia, M., Iaselli, G., Pugliese, G., Loddo, F., De Filippis, N., Aly, R., Ramos, D., Elmetenawee, W., Leszki, S., Margjeka, I., Paesani, D., Benussi, L., Bianco, S., Piccolo, D., Meola, S., Buontempo, S., Carnevali, F., Lista, L., Paolucci, P., Fienga, F., Braghieri, A., Salvini, P., Montagna, P., Riccardi, C., Vitulo, P., Asilar, E., Choi, J., Kim, T.J., Choi, S.Y., Hong, B., Lee, K.S., Oh, H.Y., Goh, J., Yu, I., Estrada, C. Uribe, Pedraza, I., Castilla-Valdez, H., Sanchez-Hernandez, A., Fernandez, R.L., Ramirez-Garcia, M., Vazquez, E., Shah, M.A., Zaganidis, N., Radi, A., Hoorani, H., Muhammad, S., Ahmad, A., Asghar, I., Khan, W.A., Eysermans, J., Da Silva De Araujo, F. Torres“…The muon system of the CERN Compact Muon Solenoid (CMS) experiment includes more than a thousand Resistive Plate Chambers (RPC). …”
Publicado 2023
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1070por Carrone, E“…Among them is the Compact Muon Solenoid (CMS), a general purpose detector optimized for the search of Higgs boson and for physics beyond the Standard Model of fundamental interactions between elementary particles. …”
Publicado 2006
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1071por Scoby, Cheyne M“…The Large Hadron Collider at CERN will provide access to a new energy regime that will offer many channels for a potential discovery of the Higgs. In the Compact Muon Solenoid (CMS) detector experiment, the “Golden mode” for Higgs discovery features decay to two Z0, with both Z0 decaying to leptonic final states. …”
Publicado 2006
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1072por CMS Collaboration“…We present the first results of a search for long-lived gluinos which have stopped in the Compact Muon Solenoid (CMS) detector after being produced in 7 TeV $pp$ collisions from CERN's Large Hadron Collider (LHC). …”
Publicado 2010
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1073por Maxa, Zdenek“…The integration with CMS (Compact Muon Solenoid) PhEDEx is described as well. The PhEDEx project (Physics Experiment Data Export) is responsible for facilitating large-scale CMS data transfers across the grid. …”
Publicado 2011
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1074por Werner, Jeremy“…The data was collected by the Compact Muon Solenoid (CMS) detector near Geneva, Switzerland during the year of 2010 and corresponds to an integrated luminosity of $\intmathcal{L}dt = 35.9pb^{-1}$. …”
Publicado 2011
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1075Study of Data Driven performance evaluation method for CMS RPC Trigger system using 2011 data at LHCpor Sharma, Archie“…The long awaited Large Hadron Collider (LHC) experiment started last year in March, 2010 and it is successfully collecting data at center of mass energy 7TeV at present. The Compact Muon Solenoid (CMS) is one of the four experiments which is getting and analyzing the results of the collision of protons at LHC. …”
Publicado 2011
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1076por Bostock, Francis John Douglas“…This work presents a study of the decay channel t tbar e nu + jets, carried out on the Compact Muon Solenoid (CMS) detector experiment. A study assessing the feasibility to measure the production cross section of tt events through this channel has been carried out at a centre-of-mass energy of 10TeV. …”
Publicado 2013
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1077por Maeenpaeae, Teppo Herman“…A comparison of various silicon materials and processing types has been launched in the framework of the Compact Muon Solenoid (CMS) experiment to find the best suited material for a future strip tracker. …”
Publicado 2013
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1078por Fernandez, M, Jaramillo, R, Lozano, M, Munoz, F.J, Pellegrini, G, Quirion, D, Rohe, T, Vila, I“…For this study, 3D pixel sensors manufactured at the Centro Nacional de Microelectrónica of Barcelona (IMB-CNM) have been bonded to the PSI46 readout chip currently used by the Compact Muon Solenoid vertex detector. Detector performance before and after irradiation up to fluences of 5x10^15 neq/cm^2 is presented.…”
Publicado 2013
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1079por Kumar, Ramandeep“…The Compact Muon Solenoid (CMS) experiment is a general purpose detector being operated at Large Hadron Collider (LHC) facility at CERN. …”
Publicado 2015
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1080por Massironi, Andrea“…The electromagnetic calorimeter (ECAL) of the Compact Muon Solenoid Experiment (CMS) started operating at the Large Hadron Collider (LHC) in Spring 2015 with proton-proton collisions at 13 TeV center-of-mass energy and at a reduced bunch spacing of 25 ns. …”
Publicado 2015
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