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72901“…Since 2007 he specialized as subject matter expert and regional mentor on Jazz and Eclipse based solutions.…”
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72902por Oh, Saehanseul“…In high-energy heavy-ion collisions at the Large Hadron Collider (LHC), a hot and dense state of matter called the Quark-Gluon Plasma (QGP) is formed. …”
Publicado 2018
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72903por Patra, Rajendra Nath“…The major physics goals of the ALICE (A Large Ion Collider Experiment) collaboration at the Large Hadron Collider (LHC) of CERN are to study the properties of a new form of high temperature and high energy density matter, called the quark-gluon plasma (QGP). The QGP had its origin in the Early Universe, within few microseconds of the Big Bang. …”
Publicado 2019
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72904por Campora Perez, Daniel Hugo“…In LHCb, particles are collided at high energies in order to understand the difference between matter and antimatter. Due to the massive quantity of data generated by the detector, it is necessary to filter data in real-time. …”
Publicado 2020
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72905por Zimmermann, Nikolas“…The origin of the source term remains unclear: both astrophysical sources, such as pulsars, and dark-matter annihilation are candidates to describe the positron flux data. …”
Publicado 2020
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72906por Pallada, Lina“…This work was successful and clearly demonstrated that $^{68m}$Cu/$^{68}$Cu is a unique probe for hyperfine interactions in areas such as condensed and soft matter physics but it is unlikely that this isotope can be used for measurements of NQIs of copper bound to biomolecules. …”
Publicado 2020
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72907por Rauco, Giorgia“…Despite the huge success of the SM of particle physics, there are some unsolved phenomena, such as the hierarchy problem and the nature of Dark Matter (DM). The stabilization of the Higgs boson mass, whose value differs from its radiative corrections, appears to be unnatural and suggests that underlying theories may exist. …”
Publicado 2021
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72908por Niang, Samuel“…Indeed, the energy resulting from the antimatter-matter annihilation reaction has properties defying any other propellant. …”
Publicado 2021
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72909por Reboud, Meril“…Interestingly, ultraviolet completions of these models contain natural Dark Matter candidates, hence relating two outstanding problems of particle physics. …”
Publicado 2021
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72910por Kuhn, Philipp Benjamin“…The ALPHA-g experiment studies the Baryon asymmetry of antimatter and matter by measuring the antihydrogen atomic mass. …”
Publicado 2021
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72911por Blair, Justin“…At extreme temperatures and pressures, QCD predicts the formation of a new state of nuclear matter called the Quark Gluon Plasma (QGP). The behavior of QCD interactions under these extreme conditions can be studied in the laboratory by colliding together ultra-relativistic heavy-ions, where the energy density is expected to reach well above the critical transition temperature for QGP formation. …”
Publicado 2023
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72912por Succurro, Antonella“…Many theories have been proposed to explain what is currently not understood, like the nature of Dark Matter, or the reason why the Higgs boson is so light. …”
Publicado 2015
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72913por Patrignani, C, Agashe, K, Aielli, G, Amsler, C, Antonelli, M, Asner, D M, Baer, H, Banerjee, Sw, Barnett, R M, Basaglia, T, Bauer, C W, Beatty, J J, Belousov, V I, Beringer, J, Bethke, S, Bichsel, H, Biebel, O, Blucher, E, Brooijmans, G, Buchmueller, O, Burkert, V, Bychkov, M A, Cahn, R N, Carena, M, Ceccucci, A, Cerri, A, Chakraborty, D, Chen, M -C, Chivukula, R S, Copic, K, Cowan, G, Dahl, O, D'Ambrosio, G, Damour, T, de Florian, D, de Gouvea, A, DeGrand, T, de Jong, P, Dissertori, G, Dobrescu, B A, D'Onofrio, M, Doser, M, Drees, M, Dreiner, H K, Dwyer, D A, Eerola, P, Eidelman, S, Ellis, J, Erler, J, Ezhela, V V, Fetscher, W, Fields, B D, Foster, B, Freitas, A, Gallagher, H, Garren, L, Gerber, H -J, Gerbier, G, Gershon, T, Gherghetta, T, Godizov, A A, Goodman, M, Grab, C, Gritsan, A V, Grojean, C, Groom, D E, Grünewald, M, Gurtu, A, Gutsche, T, Haber, H E, Hagiwara, K, Hanhart, C, Hashimoto, S, Hayato, Y, Hayes, K G, Hebecker, A, Heltsley, B, Hernández-Rey, J J, Hikasa, K, Hisano, J, Höcker, A, Holder, J, Holtkamp, A, Huston, J, Hyodo, T, Irwin, K, Jackson, J D, Johnson, K F, Kado, M, Karliner, M, Katz, U F, Klein, S R, Klempt, E, Kowalewski, R V, Krauss, F, Kreps, M, Krusche, B, Kuyanov, Yu V, Kwon, Y, Lahav, O, Laiho, J, Langacker, P, Liddle, A, Ligeti, Z, Lin, C -J, Lippmann, C, Liss, T M, Littenberg, L, Lugovsky, K S, Lugovsky, S B, Lusiani, A, Makida, Y, Maltoni, F, Mannel, T, Manohar, A V, Marciano, W J, Martin, A D, Masoni, A, Matthews, J, Meißner, U -G, Milstead, D, Mitchell, R E, Molaro, P, Mönig, K, Moortgat, F, Mortonson, M J, Murayama, H, Nakamura, K, Narain, M, Nason, P, Navas, S, Neubert, M, Nevski, P, Nir, Y, Olive, K A, Pagan Griso, S, Parsons, J, Peacock, J A, Pennington, M, Petcov, S T, Petrov, V A, Piepke, A, Pomarol, A, Quadt, A, Raby, S, Rademacker, J, Raffelt, G, Ratcliff, B N, Richardson, P, Ringwald, A, Roesler, S, Rolli, S, Romaniouk, A, Rosenberg, L J, Rosner, J L, Rybka, G, Ryutin, R A, Sachrajda, C T, Sakai, Y, Salam, G P, Sarkar, S, Sauli, F, Schneider, O, Scholberg, K, Schwartz, A J, Scott, D, Sharma, V, Sharpe, S R, Shutt, T, Silari, M, Sjöstrand, T, Skands, P, Skwarnicki, T, Smith, J G, Smoot, G F, Spanier, S, Spieler, H, Spiering, C, Stahl, A, Stone, S L, Sumino, Y, Sumiyoshi, T, Syphers, M J, Takahashi, F, Tanabashi, M, Terashi, K, Terning, J, Thorne, R S, Tiator, L, Titov, M, Tkachenko, N P, Törnqvist, N A, Tovey, D, Valencia, G, van de Water, R, Varelas, N, Venanzoni, G, Vincter, M G, Vogel, P, Vogt, A, Wakely, S P, Walkowiak, W, Walter, C W, Wands, D, Ward, D R, Wascko, M O, Weiglein, G, Weinberg, D H, Weinberg, E J, White, M, Wiencke, L R, Willocq, S, Wohl, C G, Wolfenstein, L, Womersley, J, Woody, C L, Workman, R L, Yao, W -M, Zeller, G P, Zenin, O V, Zhu, R -Y, Zimmermann, F, Zyla, P A“…We also give numerous tables, figures, formulae, and reviews of topics such as Higgs Boson Physics, Supersymmetry, Grand Unified Theories, Neutrino Mixing, Dark Energy, Dark Matter, Cosmology, Particle Detectors, Colliders, Probability and Statistics. …”
Publicado 2016
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72914por Terzo, Stefano“…ATLAS is one of the two main experiments at LHC with the purpose of investigating the microscopic properties of matter to address the most fundamental questions of particle physics. …”
Publicado 2019
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72915por Aguilar, M, Ali Cavasonza, L, Ambrosi, G, Arruda, L, Attig, N, Azzarello, P, Bachlechner, A, Barao, F, Barrau, A, Barrin, L, Bartoloni, A, Basara, L, Başeğmez-du Pree, S, Battiston, R, Becker, U, Behlmann, M, Beischer, B, Berdugo, J, Bertucci, B, Bindi, V, de Boer, W, Bollweg, K, Borgia, B, Boschini, M J, Bourquin, M, Bueno, E F, Burger, J, Burger, W J, Cai, X D, Capell, M, Caroff, S, Casaus, J, Castellini, G, Cervelli, F, Chang, Y H, Chen, G M, Chen, H S, Chen, Y, Cheng, L, Chou, H Y, Choutko, V, Chung, C H, Clark, C, Coignet, G, Consolandi, C, Contin, A, Corti, C, Crispoltoni, M, Cui, Z, Dadzie, K, Dai, Y M, Datta, A, Delgado, C, Della Torre, S, Demirköz, M B, Derome, L, Di Falco, S, Dimiccoli, F, Díaz, C, von Doetinchem, P, Dong, F, Donnini, F, Duranti, M, Egorov, A, Eline, A, Eronen, T, Feng, J, Fiandrini, E, Fisher, P, Formato, V, Galaktionov, Y, García-López, R J, Gargiulo, C, Gast, H, Gebauer, I, Gervasi, M, Giovacchini, F, Gómez-Coral, D M, Gong, J, Goy, C, Grabski, V, Grandi, D, Graziani, M, Guo, K H, Haino, S, Han, K C, He, Z H, Heil, M, Hsieh, T H, Huang, H, Huang, Z C, Incagli, M, Jia, Yi, Jinchi, H, Kanishev, K, Khiali, B, Kirn, Th, Konak, C, Kounina, O, Kounine, A, Koutsenko, V, Kulemzin, A, La Vacca, G, Laudi, E, Laurenti, G, Lazzizzera, I, Lebedev, A, Lee, H T, Lee, S C, Leluc, C, Li, J Q, Li, Q, Li, T X, Li, Z H, Light, C, Lin, C H, Lippert, T, Liu, F Z, Liu, Hu, Liu, Z, Lu, S Q, Lu, Y S, Luebelsmeyer, K, Luo, F, Luo, J Z, Luo, Xi, Lyu, S S, Machate, F, Mañá, C, Marín, J, Martin, T, Martínez, G, Masi, N, Maurin, D, Menchaca-Rocha, A, Meng, Q, Mo, D C, Molero, M, Mott, P, Mussolin, L, Nelson, T, Ni, J Q, Nikonov, N, Nozzoli, F, Oliva, A, Orcinha, M, Palermo, M, Palmonari, F, Paniccia, M, Pashnin, A, Pauluzzi, M, Pensotti, S, Perrina, C, Phan, H D, Picot-Clemente, N, Plyaskin, V, Pohl, M, Poireau, V, Popkow, A, Quadrani, L, Qi, X M, Qin, X, Qu, Z Y, Rancoita, P G, Rapin, D, Conde, A Reina, Rosier-Lees, S, Rozhkov, A, Rozza, D, Sagdeev, R, Solano, C, Schael, S, Schmidt, S M, Schulz von Dratzig, A, Schwering, G, Seo, E S, Shan, B S, Shi, J Y, Siedenburg, T, Song, J W, Sun, Z T, Tacconi, M, Tang, X W, Tang, Z C, Tian, J, Ting, Samuel C C, Ting, S M, Tomassetti, N, Torsti, J, Urban, T, Vagelli, V, Valente, E, Valtonen, E, Vázquez Acosta, M, Vecchi, M, Velasco, M, Vialle, J P, Vizán, J, Wang, L Q, Wang, N H, Wang, Q L, Wang, X, Wang, X Q, Wang, Z X, Wei, J, Weng, Z L, Wu, H, Xiong, R Q, Xu, W, Yan, Q, Yang, Y, Yi, H, Yu, Y J, Yu, Z Q, Zannoni, M, Zeissler, S, Zhang, C, Zhang, F, Zhang, J H, Zhang, Z, Zhao, F, Zheng, Z M, Zhuang, H L, Zhukov, V, Zichichi, A, Zimmermann, N, Zuccon, P“…The finite cutoff energy of the source term, $E_s$, is established with a significance of more than $4 \sigma$, and it's value is determined to be $E_s = 810^{+310}_{-180}$ GeV.These experimental data on cosmic ray positrons show that, at high energies, they predominantly originate either from dark matter collisions or from new astrophysical sources.…”
Publicado 2019
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72916por Aguilar, M, Ali Cavasonza, L, Ambrosi, G, Arruda, L, Attig, N, Barao, F, Barrin, L, Bartoloni, A, Başeğmez-du Pree, S, Bates, J, Battiston, R, Behlmann, M, Beischer, B, Berdugo, J, Bertucci, B, Bindi, V, de Boer, W, Bollweg, K, Borgia, B, Boschini, M J, Bourquin, M, Bueno, E F, Burger, J, Burger, W J, Burmeister, S, Cai, X D, Capell, M, Casaus, J, Castellini, G, Cervelli, F, Chang, Y H, Chen, G M, Chen, H S, Chen, Y, Cheng, L, Chou, H Y, Chouridou, S, Choutko, V, Chung, C H, Clark, C, Coignet, G, Consolandi, C, Contin, A, Corti, C, Cui, Z, Dadzie, K, Dai, Y M, Delgado, C, Della Torre, S, Demirköz, M B, Derome, L, Di Falco, S, Di Felice, V, Díaz, C, Dimiccoli, F, von Doetinchem, P, Dong, F, Donnini, F, Duranti, M, Egorov, A, Eline, A, Feng, J, Fiandrini, E, Fisher, P, Formato, V, Freeman, C, Galaktionov, Y, Gámez, C, García-López, R J, Gargiulo, C, Gast, H, Gebauer, I, Gervasi, M, Giovacchini, F, Gómez-Coral, D M, Gong, J, Goy, C, Grabski, V, Grandi, D, Graziani, M, Guo, K H, Haino, S, Han, K C, Hashmani, R K, He, Z H, Heber, B, Hsieh, T H, Hu, J Y, Huang, Z C, Hungerford, W, Incagli, M, Jang, W Y, Jia, Yi, Jinchi, H, Kanishev, K, Khiali, B, Kim, G N, Kirn, Th, Konyushikhin, M, Kounina, O, Kounine, A, Koutsenko, V, Kuhlman, A, Kulemzin, A, La Vacca, G, Laudi, E, Laurenti, G, Lazzizzera, I, Lebedev, A, Lee, H T, Lee, S C, Leluc, C, Li, J Q, Li, M, Li, Q, Li, S, Li, T X, Li, Z H, Light, C, Lin, C H, Lippert, T, Liu, Z, Lu, S Q, Lu, Y S, Luebelsmeyer, K, Luo, J Z, Lyu, S S, Machate, F, Mañá, C, Marín, J, Marquardt, J, Martin, T, Martínez, G, Masi, N, Maurin, D, Menchaca-Rocha, A, Meng, Q, Mo, D C, Molero, M, Mott, P, Mussolin, L, Ni, J Q, Nikonov, N, Nozzoli, F, Oliva, A, Orcinha, M, Palermo, M, Palmonari, F, Paniccia, M, Pashnin, A, Pauluzzi, M, Pensotti, S, Phan, H D, Plyaskin, V, Pohl, M, Porter, S, Qi, X M, Qin, X, Qu, Z Y, Quadrani, L, Rancoita, P G, Rapin, D, Reina Conde, A, Rosier-Lees, S, Rozhkov, A, Rozza, D, Sagdeev, R, Schael, S, Schmidt, S M, Schulz von Dratzig, A, Schwering, G, Seo, E S, Shan, B S, Shi, J Y, Siedenburg, T, Solano, C, Song, J W, Sonnabend, R, Sun, Q, Sun, Z T, Tacconi, M, Tang, X W, Tang, Z C, Tian, J, Ting, Samuel C C, Ting, S M, Tomassetti, N, Torsti, J, Tüysüz, C, Urban, T, Usoskin, I, Vagelli, V, Vainio, R, Valente, E, Valtonen, E, Vázquez Acosta, M, Vecchi, M, Velasco, M, Vialle, J P, Wang, L Q, Wang, N H, Wang, Q L, Wang, S, Wang, X, Wang, Z X, Wei, J, Weng, Z L, Wu, H, Xiong, R Q, Xu, W, Yan, Q, Yang, Y, Yi, H, Yu, Y J, Yu, Z Q, Zannoni, M, Zhang, C, Zhang, F, Zhang, F Z, Zhang, J H, Zhang, Z, Zhao, F, Zheng, Z M, Zhuang, H L, Zhukov, V, Zichichi, A, Zimmermann, N, Zuccon, P“…The physics objectives include the precise studies of the origin of dark matter, antimatter, and cosmic rays as well as the exploration of new phenomena. …”
Publicado 2021
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72917“…This work describes the acquisition system appositely developed for such experiments, whose main goal is to verify, mostly in real time, the response of matter when impacted by highly energetic proton beams. …”
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72918por Segura-Carmona, Juan E., Bernal-Barragán, Hugo, Carrera-Treviño, Rogelio, Ibarra-Gil, Humberto“…The objectives of the study were to compare dry matter-based consumption and the shrub selectivity index for white-tailed deer and to study the relationships between some physical and chemical characteristics of shrubs that may affect consumption. …”
Publicado 2020
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Online Artículo -
72919“…Such professor belongs to the group ‘memorable teachers’ signalled as such by their advanced students.The category results from a peculiar teaching approach, in which the professor privileges the affective bond with her students as a core matter for the understanding of the complex philosophical issues she addresses. …”
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72920“…The process of romantic love demystification is shownin the results, which is wrongly understood as an idealized love, proposing an effective intervention totransition to mature love that also allows approaching future cases in which the matter of what love isquestioned, especially romantic love, and to show different perspectives of how to love without losingeverything, since in psychology, and especially in the clinical area, romantic love and breakups arefundamental subjects in therapy for adults and couple therapy…”
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