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1001“…Perspectives for $\alpha_s$ and $\rm V_{cs}$ extractions from W decays measurements at the LHC and future $e^+e^-$ colliders are presented.…”
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1002
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1003
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1004
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1005
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1006
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1007
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1008por Lee, Kyong Sei“…In this paper, we report on the systematic rate-capability study of four-gap phenolic resistive plate chambers (RPCs), with cosmic muons and gamma rays emitted from a $^{137}$Cs source. A prototype four-gap RPC with a gap thickness of 1.06 mm has been constructed with 2-mm thick phenolic high-pressure-laminated (HPL) plates. …”
Publicado 2014
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1009por Sgobba, S, Aviles Santillana, I, Langeslag, S, Fernandez Pison, P, Castillo Rivero, S, Libeyre, P, Jong, C, Everitt, D, Freudenberg, K“…The ITER Central Solenoid (CS) consists of six independent wound modules. The cooling of the cable-in-conduit conductor is assured by a forced flow of supercritical He at 4.5 K supplied by He inlets located at the innermost radius of the coil. …”
Publicado 2019
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1010por Barate, R, Abbaneo, D, Affholderbach, K, Ajaltouni, Ziad J, Alemany, R, Aleppo, M, Antonelli, A, Antonelli, M, Armstrong, S R, Aubert, Jean-Jacques, Azzurri, P, Badaud, F, Bagliesi, G, Becker, U, Bencivenni, G, Beuselinck, R, Binnie, David M, Black, S N, Blair, G A, Bloch-Devaux, B, Blondel, A, Boccali, T, Boix, G, Bologna, G, Bonissent, A, Booth, C N, Bossi, F, Botterill, David R, Boucrot, J, Bowdery, C K, Bozzi, C, Brandt, S, Bravo, S, Brient, J C, Buchmüller, O L, Buck, P G, Böhrer, A, Büscher, V, Calderini, G, Callot, O, Cameron, W, Campana, P, Capon, G, Carr, J, Cartwright, S L, Casado, M P, Cattaneo, M, Cavanaugh, R J, Cerutti, F, Chalmers, M, Chazelle, G, Chen, S, Chiarella, V, Chmeissani, M, Ciulli, V, Clifft, R W, Colaleo, A, Colas, P, Coles, J, Combley, F, Corden, M, Cowan, G D, Coyle, P, Creanza, D, Crespo, J M, Curtis, L, Dann, J H, Daskalakis, G, Davier, M, De Palma, M, De Vivie de Régie, J B, Dell'Orso, R, Deschamps, O, Dessagne, S, Dhamotharan, S, Dietl, H, Dissertori, G, Dornan, Peter J, Drevermann, H, Duflot, L, Décamp, D, Ealet, A, Edgecock, T R, Ellis, G, Elmer, P, Fabbro, B, Falvard, A, Faïf, G, Ferdi, C, Ferguson, D P S, Fernández, E, Fernández-Bosman, M, Ferrante, I, Finch, A J, Focardi, E, Forty, Roger W, Foster, F, Fouchez, D, Frank, M, Ganis, G, Gao, Y, Garrido, L, Gay, P, Georgiopoulos, C H, Geweniger, C, Ghete, V M, Ghez, P, Giannini, G, Gianotti, F, Giassi, A, Giehl, I, Gilardoni, S S, Girone, M, Girtler, P, Gobbo, B, González, S, Goodsir, S M, Goy, C, Graugès-Pous, E, Green, M G, Greening, T C, Gregorio, A, Grivaz, J F, Grupen, Claus, Guicheney, C, Halley, A W, Hanke, P, Hansen, J B, Hansen, J D, Hansen, J R, Hansen, P H, Harvey, J, Hayes, O J, Henrard, P, Hepp, V, Hess, J, Heusse, P, Hodgson, P N, Hu, H, Huang, X, Hughes, G, Hutchcroft, D E, Hölldorfer, F, Hüttmann, K, Iaselli, Giuseppe, Jacholkowska, A, Jakobs, K, Janot, P, Jin, S, Jones, L T, Jones, R W L, Jost, B, Jousset, J, Juste, A, Jézéquel, S, Kado, M, Kile, J, Kim, H Y, Kleinknecht, K, Kluge, E E, Kneringer, E, Konstantinidis, N P, Kröcker, M, Kuhn, D, Kyriakis, A, Lançon, E, Laurelli, P, Lees, J P, Lefrançois, J, Lehraus, Ivan, Lehto, M H, Lemaire, M C, Leroy, O, Ligabue, F, Lin, J, Litke, A M, Locci, E, Loomis, C, Lynch, J G, Lütjens, G, Machefert, F P, Maggi, G, Maggi, M, Maley, P, Mannert, C, Mannocchi, G, Marinelli, N, Markou, C, Marrocchesi, P S, Martin, E B, Martin, F, Martínez, M, Mato, P, McNamara, P A, McNeil, M A, Medcalf, T, Merino, G, Merle, E, Messineo, A, Michel, B, Minard, M N, Minten, Adolf G, Miquel, R, Mir, L M, Misiejuk, A, Monteil, S, Montret, J C, Morawitz, P, Moser, H G, Moutoussi, A, Murtas, F, Murtas, G P, Männer, W, Müller, A S, Nash, J, Negus, P, Nielsen, J, Nilsson, B S, Norton, P R, Nowell, J, Nuzzo, S, Nürnberger, H A, O'Shea, V, Orejudos, W, Ouyang, Q, Pacheco, A, Palla, Fabrizio, Pallin, D, Pan, Y B, Parrini, G, Passalacqua, L, Pepé-Altarelli, M, Perret, P, Pietrzyk, B, Podlyski, F, Prange, G, Przysiezniak, H, Putzer, A, Pérez, P, Pütz, J, Quast, G, Ragusa, F, Raine, C, Rander, J, Ranieri, A, Ranjard, F, Raso, G, Renardy, J F, Renk, B, Rensch, B, Riu, I, Rizzo, G, Robertson, N A, Rohne, E, Rolandi, Luigi, Rosowsky, A, Rothberg, J E, Rougé, A, Rudolph, G, Ruggieri, F, Ruiz, H, Räven, B, Saadi, Y, Saeger, P, Sander, H G, Sanguinetti, G, Schael, S, Schlatter, W D, Schmeling, S, Schmitt, M, Schneider, O, Sciabà, A, Scott, I J, Sedgbeer, J K, Selvaggi, G, Serin, L, Settles, Ronald, Seywerd, H C J, Sguazzoni, G, Sieler, U, Silvestris, L, Simopoulou, Errietta, Smith, D, Smizanska, M, Spagnolo, P, Stenzel, H, Strong, J A, Swynghedauw, M, Tanaka, R, Taylor, G, Teixeira-Dias, P, Tejessy, W, Tempesta, P, Tenchini, Roberto, Teubert, F, Thompson, A S, Thompson, J C, Thompson, L F, Thomson, E, Tilquin, A, Tittel, K, Tomalin, I R, Tournefier, E, Trabelsi, A, Tricomi, A, Tuchming, B, Valassi, Andrea, Vallage, B, Vayaki, Anna, Veillet, J J, Venturi, A, Verdini, P G, Videau, H L, Videau, I, Von Wimmersperg-Töller, J H, Wachsmuth, H W, Walsh, J, Wang, T, Ward, J J, Wasserbaech, S R, Werner, S, Wiedenmann, W, Williams, M D, Williams, M I, Williams, R W, Wolf, G, Wright, A E, Wu Sau Lan, Wu, X, Wunsch, M, Wäänänen, A, Xie, Y, Xu, R, Xue, S, Zachariadou, K, Zeitnitz, C, Zerwas, D, Zhang, J, Zhang, L, Zhao, W, Ziegler, T, Zito, G, Zobernig, G“…This allows a direct determination of the CKM matrix element |V_cs| = 1.00 +- 0.11_stat +- 0.07_syst.…”
Publicado 1999
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1011por Regenfus, C“…The detector consists of two layers of each 16 double-sided silicon micro-strip modules (16 cm long), surrounded by 192 pure-CsI scintillation crystals ( approximately equals 4 cm**3), read by avalanche photo diodes. …”
Publicado 2003
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1012“…Recent experimental results of beta-decay energies for very neutron- rich Rb and Cs isotopes with mass number 94<or=A<or=98 and 142<or=A<or =146, respectively, are presented. …”
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1013por Regenfus, C“…To meet the requirements of low temperature operation (77 K) in a high magnetic field, compact size, low power consumption and high granularity, a combination of two layers of each 16 double sided Si- mu -strip modules (16 cm long) was chosen, surrounded by 192 pure-CsI crystals (each approximately= 4 cm/sup 3/), which are read by UV sensitive photo diodes. …”
Publicado 2001
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1014“…X-ray photoelectron spectroscopy analysis of the photocathode with the highest quantum efficiency has revealed a nearly impurity-free surface with stoichiometry Cs$_{1.3}$K$_{1.8}$Sb$_{1.0}$ when pristine. Furthermore, it has been found that oxidation of the alkali surface atoms as well as carbon adsorption from hydrocarbons and minor fluorine uptake are the causes of quantum efficiency reduction during laser illumination in the utilized experimental set-up.…”
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1015por Iyer, Siddharth S., Schauman, S. Sophie, Sandino, Christopher M., Yurt, Mahmut, Cao, Xiaozhi, Liao, Congyu, Ruengchaijatuporn, Natthanan, Chatnuntawech, Itthi, Tong, Elizabeth, Setsompop, Kawin“…RESULTS: Deli-CS achieves comparable reconstruction quality with 50% fewer iterations bringing the full reconstruction time to 20 minutes. …”
Publicado 2023
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1016por Zhong, Yigui, Li, Shaozhi, Liu, Hongxiong, Dong, Yuyang, Aido, Kohei, Arai, Yosuke, Li, Haoxiang, Zhang, Weilu, Shi, Youguo, Wang, Ziqiang, Shin, Shik, Lee, H. N., Miao, H., Kondo, Takeshi, Okazaki, Kozo“…Density functional theory calculations predicted weak EPC strength, λ, supporting an unconventional pairing mechanism in CsV(3)Sb(5). However, experimental determination of λ is still missing, hindering a microscopic understanding of the intertwined ground state of CsV(3)Sb(5). …”
Publicado 2023
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1017“…Cs(2)SnCl(6) double perovskite has attracted wide attention as a promising optoelectronic material because of its better stability and lower toxicity than its lead counterparts. …”
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1018por Qiu, Hengwei, Li, Fu, He, Shan, Shi, Ran, Han, Yaoyao, Abudukeremu, Hannikezi, Zhang, Lin, Zhang, Yan, Wang, Song, Liu, Wangyu, Ma, Chao, Fang, Honghua, Long, Run, Wu, Kaifeng, Zhang, Hao, Li, Jinghong“…This work reports the synthesis of uniform, epitaxially grown CsPbBr(3)/CdS Janus NC heterostructures with ultrafast charge separation across the electronically coupled interface. …”
Publicado 2023
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1019por Zhu, Mengliang, Chen, Guangling, Wu, Jianqing, Wang, Jian, Wang, Yu, Guo, Shirong, Shu, Sheng“…Gene structure analysis revealed that CsSAMDC2 and CsSAMDC3 in group I have no intron, which showed a similar response to salt stress by gene expression analysis. …”
Publicado 2023
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1020