Search Results - "Niess, V"

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    Current status of the standard model CKM fit and constraints on Δ F = 2 new physics by Charles, J., Deschamps, O., Descotes-Genon, S., Lacker, H., Menzel, A., Monteil, S., Niess, V., Ocariz, J., Orloff, J., Perez, A., Qian, W., Tisserand, V., Trabelsi, K., Urquijo, P., Vale Silva, L.

    “…This article summarizes the status of the global fit of the Cabibbo-Kobayashi-Maskawa (CKM) parameters within the Standard Model performed by the CKMfitter…”
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    Isospin analysis of charmless B-meson decays by Charles, J., Deschamps, O., Descotes-Genon, S., Niess, V.

    “…We discuss the determination of the CKM angle α using the non-leptonic two-body decays B → π π , B → ρ ρ and B → ρ π using the latest data available. We…”
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    Radio-detection of neutrino-induced air showers: The influence of topography by Decoene, V., Renault-Tinacci, N., Martineau-Huynh, O., Charrier, D., Kotera, K., Le Coz, S., Niess, V., Tueros, M., Zilles, A.

    “…Neutrinos of astrophysical origin could be detected through the electromagnetic radiation of the particle showers induced in the atmosphere by their…”
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    First detection of extensive air showers by the TREND self-triggering radio experiment by Ardouin, D., Cârloganu, C., Charrier, D., Gou, Q., Hu, H., Kai, L., Lautridou, P., Martineau-Huynh, O., Niess, V., Ravel, O., Saugrin, T., Wu, X., Zhang, J., Zhang, Y., Zhao, M., Zheng, Y.

    Published in Astroparticle physics (01-04-2011)
    “…An antenna array devoted to the autonomous radio-detection of high energy cosmic rays is being deployed on the site of the 21 cm array radio telescope in…”
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    Towards a muon radiography of the Puy de Dôme by Cârloganu, C., Niess, V., Béné, S., Busato, E., Dupieux, P., Fehr, F., Gay, P., Miallier, D., Vulpescu, B., Boivin, P., Combaret, C., Labazuy, P., Laktineh, I., Lénat, J.-F., Mirabito, L., Portal, A.

    “…High-energy (above a few hundred GeV) atmospheric muons are a natural probe for geophysical studies. They can travel through kilometres of rock allowing for a…”
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    Inner structure of the Puy de Dôme volcano: cross-comparison of geophysical models (ERT, gravimetry, muon imaging) by Portal, A., Labazuy, P., Lénat, J.-F., Béné, S., Boivin, P., Busato, E., Cârloganu, C., Combaret, C., Dupieux, P., Fehr, F., Gay, P., Laktineh, I., Miallier, D., Mirabito, L., Niess, V., Vulpescu, B.

    “…Muon imaging of volcanoes and of geological structures in general is actively being developed by several groups in the world. It has the potential to provide…”
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    Air shower simulation for background estimation in muon tomography of volcanoes by Béné, S, Boivin, P, Busato, E, Cârloganu, C, Combaret, C, Dupieux, P, Fehr, F, Gay, P, Labazuy, P, Laktineh, I, Lénat, J.-F, Miallier, D, Mirabito, L, Niess, V, Portal, A, Vulpescu, B

    “…One of the main sources of background for the radiography of volcanoes using atmospheric muons comes from the accidental coincidences produced in the muon…”
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    Study of the response of ATLAS electromagnetic liquid argon calorimeters to muons by Aharrouche, M., Colas, J., Di Ciaccio, L., El Kacimi, M., Gaumer, O., Gouanère, M., Goujdami, D., Lafaye, R., Laplace, S., Le Maner, C., Neukermans, L., Perrodo, P., Poggioli, L., Prieur, D., Przysiezniak, H., Sauvage, G., Wingerter-Seez, I., Zitoun, R., Lanni, F., Ma, H., Rajagopalan, S., Rescia, S., Takai, H., Belymam, A., Benchekroun, D., Hakimi, M., Gao, Y., Lu, L., Stroynowski, R., Aleksa, M., Carli, T., Fassnacht, P., Gianotti, F., Lampl, W., Collot, J., Hostachy, J.Y., Ledroit-Guillon, F., Malek, F., Martin, P., Viret, S., Leltchouk, M., Parsons, J.A., Simion, S., Barreiro, F., Del Peso, J., Labarga, L., Oliver, C., Rodier, S., Barrillon, P., Djama, F., Hubaut, F., Mangeard, P.S., Monnier, E., Niess, V., Pralavorio, P., Resende, B., Serfon, C., Toth, J., Zhang, H., Banfi, D., Carminati, L., Cavalli, D., Costa, G., Delmastro, M., Fanti, M., Mandelli, L., Mazzanti, M., Tartarelli, G.F., Kotov, K., Maslennikov, A., Pospelov, G., Tikhonov, Yu, Bourdarios, C., Fayard, L., Fournier, D., Iconomidou-Fayard, L., Kado, M., Parrour, G., Plamondon, M., Puzo, P., Rousseau, D., Sacco, R., Serin, L., Unal, G., Zerwas, D., Dekhissi, B., Derkaoui, J., Maaroufi, F., Cleland, W., Laforge, B., Nikolic-Audit, I., Schwemling, Ph, Ghazlane, H., Cherkaoui El Moursli, R., Idrissi Fakhr-Eddine, A., Boonekamp, M., Mansoulié, B., Meyer, P., Schwindling, J., Tayalati, Y.

    “…The response of the ATLAS electromagnetic calorimeter to muons has been studied in this paper. Results on signal over noise ratio, assessment of the detector…”
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    Constraints on new physics in B − B ¯ mixing in the light of recent LHCb data by Lenz, A., Nierste, U., Charles, J., Descotes-Genon, S., Lacker, H., Monteil, S., Niess, V., T’Jampens, S.

    “…We perform model-independent statistical analyses of three scenarios accommodating new physics (NP) in Delta F = 2 flavor-changing neutral current amplitudes…”
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    Performance of the ATLAS liquid argon endcap calorimeter in the pseudorapidity region in beam tests by Pinfold, J., Soukup, J., Archambault, J.P., Cojocaru, C., Khakzad, M., Oakham, G., Schram, M., Vincter, M.G., Datskov, V., Drobin, V., Fedorov, A., Golubykh, S., Javadov, N., Kalinnikov, V., Kakurin, S., Kazarinov, M., Kukhtin, V., Ladygin, E., Lazarev, A., Neganov, A., Petrova, L., Pisarev, I., Rousakovitch, N., Serochkin, E., Shilov, S., Shalyugin, A., Usov, Yu, Bruncko, D., Kladiva, E., Stavina, P., Strizenec, P., Barreiro, F., Gabaldon, C., Labarga, F., Nebot, E., Oliver, C., Rodier, S., del Peso, J., Belkin, A., Heldmann, M., Koepke, L., Othegraven, R., Schliephake, T., Schroff, D., Secker, H., Thomas, J., Zeitnitz, C., Benchouk, C., Djama, F., Hubaut, F., Monnier, E., Niess, V., Pralavorio, P., Raymond, M., Resende, B., Sauvage, D., Serfon, C., Tisserant, S., Toth, J., Azuelos, G., Delsart, P., Leroy, C., Mehdiyev, R., Akimov, A., Blagov, M., Komar, A., Snesarev, A., Speransky, M., Sulin, V., Yakimenko, M., Epshtein, V., Khovansky, V., Shatalov, P., Aderholz, M., Barillari, T., Cwienk, W., Fischer, A., Habring, J., Huber, J., Karev, A., Kiryunin, A., Kurchaninov, L., Menke, S., Mooshofer, P., Oberlack, H., Salihagic, D., Schacht, P., Chen, T., Ping, J., Qi, M., Kazanin, V., Malyshev, V., Maslennikov, A., Pospelov, G., Snopkov, R., Soukharev, A., Talyshev, A., Tikhonov, Y., Cavalleri, P., Schwemling, P.

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    ANTARES: The first undersea neutrino telescope by Ageron, M., Anghinolfi, M., Ardid, M., Assis Jesus, A.C., Aubert, J.-J., Auer, R., Becherini, Y., Bersani, A., Bigongiari, C., de Botton, N., Busto, J., Calzas, A., Capone, A., Carr, J., Cassano, B., Castorina, E., Cecchini, S., Chaleil, Th, Circella, M., Compère, C., Coniglione, R., Coppolani, X., Cosquer, A., Coyle, P., Cuneo, S., Decowski, M.P., Di Maria, F., Dinkespiler, B., Distefano, C., Dornic, D., Drogou, J.-F., Druillole, F., Durand, D., Falchini, E., Fehr, F., Ferri, M., Folger, F., Gay, P., Gensolen, F., Halladjian, G., van Haren, H., Heijboer, A.J., Hernández-Rey, J.J., Herold, B., Hogenbirk, J., Jaquet, M., Jaspers, M., Kappes, A., Kok, H., Kretschmer, W., Kruijer, A., Lafoux, H., Lambard, G., Le Guen, Y., Lefèvre, D., Lévéque, C., Marcel, A., Marcelin, M., Martinez-Mora, J.A., Masullo, R., Migneco, E., Montaruli, T., Motz, H., Musumeci, M., Neff, M., Oberski, J.E.J., Păvălaş, G.E., Peek, H., Piattelli, P., Picot-Clemente, N., Picq, C., Prono, G., Racca, C., van Randwijk, J., Reed, C., Réthoré, F., Rewiersma, P., Rottura, A., Roux, J., Russo, G.V., Salesa, F., Salomon, K., Shanidze, R., Shirokov, E., Simeone, F., Spies, A., Spona, T., Stolarczyk, Th, Streeb, K., Sulak, L., Tamburini, C., Tasca, L., Valdy, P., Van Elewyck, V., Vecchi, M., Verlaat, B., Virique, E., van Wijk, R., Yepes, H., Zaborov, D.

    “…The ANTARES Neutrino Telescope was completed in May 2008 and is the first operational Neutrino Telescope in the Mediterranean Sea. The main purpose of the…”
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    Autonomous radio detection of air showers with the TREND50 antenna array by Charrier, D., de Vries, K.D., Gou, Q., Gu, J., Hu, H., Huang, Y., Le Coz, S., Martineau-Huynh, O., Niess, V., Saugrin, T., Tueros, M., Wu, X., Zhang, J., Zhang, Y.

    Published in Astroparticle physics (01-07-2019)
    “…TREND50 is a radio detection setup of 50 self-triggered antennas working in the 50–100 MHz frequency range and deployed in a radio-quiet valley of the Tianshan…”
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    Underwater acoustic detection of ultra high energy neutrinos by Niess, V., Bertin, V.

    Published in Astroparticle physics (01-11-2006)
    “…We investigate the acoustic detection method of 1018–20eV neutrinos in a Mediterranean Sea environment. The acoustic signal is re-evaluated according to…”
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