LIVIVO - The Search Portal for Life Sciences

zur deutschen Oberfläche wechseln
Advanced search

Search results

Result 1 - 10 of total 229

Search options

  1. Article ; Online: High-Statistics Measurement of Neutrino Quasielasticlike Scattering at 6 GeV on a Hydrocarbon Target.

    Carneiro, M F / Ruterbories, D / Ahmad Dar, Z / Akbar, F / Andrade, D A / Ascencio, M V / Badgett, W / Bashyal, A / Bercellie, A / Betancourt, M / Bonin, K / Bravar, A / Budd, H / Caceres, G / Cai, T / da Motta, H / Díaz, G A / Felix, J / Fields, L /
    Filkins, A / Fine, R / Gago, A M / Ghosh, A / Gran, R / Hahn, D / Harris, D A / Henry, S / Hylen, J / Jena, S / Jena, D / Joe, C / King, B / Kleykamp, J / Kordosky, M / Last, D / Le, T / LeClerc, J / Lozano, A / Lu, X-G / Maher, E / Manly, S / Mann, W A / McFarland, K S / McGivern, C L / McGowan, A M / Messerly, B / Miller, J / Morfín, J G / Murphy, M / Naples, D / Nelson, J K / Nguyen, C / Norrick, A / Olivier, A / Paolone, V / Perdue, G N / Riehecky, P / Schellman, H / Schlabach, P / Solano Salinas, C J / Su, H / Sultana, M / Syrotenko, V S / Torretta, D / Wret, C / Yaeggy, B / Yonehara, K / Zazueta, L

    Physical review letters

    2020  Volume 124, Issue 12, Page(s) 121801

    Abstract: We measure neutrino charged-current quasielasticlike scattering on hydrocarbon at high statistics using the wideband Neutrinos at the Main Injector beam with neutrino energy peaked at 6 GeV. The double-differential cross section is reported in terms of ... ...

    Abstract We measure neutrino charged-current quasielasticlike scattering on hydrocarbon at high statistics using the wideband Neutrinos at the Main Injector beam with neutrino energy peaked at 6 GeV. The double-differential cross section is reported in terms of muon longitudinal (p_{∥}) and transverse (p_{⊥}) momentum. Cross section contours versus lepton momentum components are approximately described by a conventional generator-based simulation, however, discrepancies are observed for transverse momenta above 0.5  GeV/c for longitudinal momentum ranges 3-5 and 9-20  GeV/c. The single differential cross section versus momentum transfer squared (dσ/dQ_{QE}^{2}) is measured over a four-decade range of Q^{2} that extends to 10  GeV^{2}. The cross section turnover and falloff in the Q^{2} range 0.3-10  GeV^{2} is not fully reproduced by generator predictions that rely on dipole form factors. Our measurement probes the axial-vector content of the hadronic current and complements the electromagnetic form factor data obtained using electron-nucleon elastic scattering. These results help oscillation experiments because they probe the importance of various correlations and final-state interaction effects within the nucleus, which have different effects on the visible energy in detectors.
    Language English
    Publishing date 2020-04-13
    Publishing country United States
    Document type Journal Article
    ZDB-ID 208853-8
    ISSN 1079-7114 ; 0031-9007
    ISSN (online) 1079-7114
    ISSN 0031-9007
    DOI 10.1103/PhysRevLett.124.121801
    Database MEDical Literature Analysis and Retrieval System OnLINE

    More links

    Kategorien

  2. Article ; Online: Precision Constraints for Three-Flavor Neutrino Oscillations from the Full MINOS+ and MINOS Dataset.

    Adamson, P / Anghel, I / Aurisano, A / Barr, G / Blake, A / Cao, S V / Carroll, T J / Castromonte, C M / Chen, R / Childress, S / Coelho, J A B / De Rijck, S / Evans, J J / Feldman, G J / Flanagan, W / Gabrielyan, M / Germani, S / Gomes, R A / Gouffon, P /
    Graf, N / Grzelak, K / Habig, A / Hahn, S R / Hartnell, J / Hatcher, R / Holin, A / Huang, J / Koerner, L W / Kordosky, M / Kreymer, A / Lang, K / Lucas, P / Mann, W A / Marshak, M L / Mayer, N / Mehdiyev, R / Meier, J R / Miller, W H / Mills, G / Naples, D / Nelson, J K / Nichol, R J / O'Connor, J / Pahlka, R B / Pavlović, Ž / Pawloski, G / Perch, A / Pfützner, M M / Phan, D D / Plunkett, R K / Poonthottathil, N / Qiu, X / Radovic, A / Sail, P / Sanchez, M C / Schneps, J / Schreckenberger, A / Sharma, R / Sousa, A / Tagg, N / Thomas, J / Thomson, M A / Timmons, A / Todd, J / Tognini, S C / Toner, R / Torretta, D / Vahle, P / Weber, A / Whitehead, L H / Wojcicki, S G

    Physical review letters

    2020  Volume 125, Issue 13, Page(s) 131802

    Abstract: We report the final measurement of the neutrino oscillation parameters Δm_{32}^{2} and sin^{2}θ_{23} using all data from the MINOS and MINOS+ experiments. These data were collected using a total exposure of 23.76×10^{20} protons on target producing ν_{μ} ...

    Abstract We report the final measurement of the neutrino oscillation parameters Δm_{32}^{2} and sin^{2}θ_{23} using all data from the MINOS and MINOS+ experiments. These data were collected using a total exposure of 23.76×10^{20} protons on target producing ν_{μ} and ν[over ¯]_{μ} beams and 60.75 kt yr exposure to atmospheric neutrinos. The measurement of the disappearance of ν_{μ} and the appearance of ν_{e} events between the Near and Far detectors yields |Δm_{32}^{2}|=2.40_{-0.09}^{+0.08}(2.45_{-0.08}^{+0.07})×10^{-3}  eV^{2} and sin^{2}θ_{23}=0.43_{-0.04}^{+0.20}(0.42_{-0.03}^{+0.07}) at 68% C.L. for normal (inverted) hierarchy.
    Language English
    Publishing date 2020-10-09
    Publishing country United States
    Document type Journal Article
    ZDB-ID 208853-8
    ISSN 1079-7114 ; 0031-9007
    ISSN (online) 1079-7114
    ISSN 0031-9007
    DOI 10.1103/PhysRevLett.125.131802
    Database MEDical Literature Analysis and Retrieval System OnLINE

    More links

    Kategorien

  3. Article: ICARUS at the Fermilab Short-Baseline Neutrino program: initial operation.

    Abratenko, P / Aduszkiewicz, A / Akbar, F / Pons, M Artero / Asaadi, J / Aslin, M / Babicz, M / Badgett, W F / Bagby, L F / Baibussinov, B / Behera, B / Bellini, V / Beltramello, O / Benocci, R / Berger, J / Berkman, S / Bertolucci, S / Bertoni, R / Betancourt, M /
    Bettini, M / Biagi, S / Biery, K / Bitter, O / Bonesini, M / Boone, T / Bottino, B / Braggiotti, A / Brailsford, D / Bremer, J / Brice, S J / Brio, V / Brizzolari, C / Brown, J / Budd, H S / Calaon, F / Campani, A / Carber, D / Carneiro, M / Terrazas, I Caro / Carranza, H / Casazza, D / Castellani, L / Castro, A / Centro, S / Cerati, G / Chalifour, M / Chambouvet, P / Chatterjee, A / Cherdack, D / Cherubini, S / Chithirasreemadam, N / Cicerchia, M / Cicero, V / Coan, T / Cocco, A G / Convery, M R / Copello, S / Cristaldo, E / Dange, A A / de Icaza Astiz, I / De Roeck, A / Di Domizio, S / Di Noto, L / Di Stefano, C / Di Ferdinando, D / Diwan, M / Dolan, S / Domine, L / Donati, S / Doubnik, R / Drielsma, F / Dyer, J / Dytman, S / Fabre, C / Fabris, F / Falcone, A / Farnese, C / Fava, A / Ferguson, H / Ferrari, A / Ferraro, F / Gallice, N / Garcia, F G / Geynisman, M / Giarin, M / Gibin, D / Gigli, S G / Gioiosa, A / Gu, W / Guerzoni, M / Guglielmi, A / Gurung, G / Hahn, S / Hardin, K / Hausner, H / Heggestuen, A / Hilgenberg, C / Hogan, M / Howard, B / Howell, R / Hrivnak, J / Iliescu, M / Ingratta, G / James, C / Jang, W / Jung, M / Jwa, Y-J / Kashur, L / Ketchum, W / Kim, J S / Koh, D-H / Kose, U / Larkin, J / Laurenti, G / Lukhanin, G / Marchini, S / Marshall, C M / Martynenko, S / Mauri, N / Mazzacane, A / McFarland, K S / Méndez, D P / Menegolli, A / Meng, G / Miranda, O G / Mladenov, D / Mogan, A / Moggi, N / Montagna, E / Montanari, C / Montanari, A / Mooney, M / Moreno-Granados, G / Mueller, J / Naples, D / Nebot-Guinot, M / Nessi, M / Nichols, T / Nicoletto, M / Norris, B / Palestini, S / Pallavicini, M / Paolone, V / Papaleo, R / Pasqualini, L / Patrizii, L / Peghin, R / Petrillo, G / Petta, C / Pia, V / Pietropaolo, F / Poirot, J / Poppi, F / Pozzato, M / Prata, M C / Prosser, A / Putnam, G / Qian, X / Rampazzo, G / Rappoldi, A / Raselli, G L / Rechenmacher, R / Resnati, F / Ricci, A M / Riccobene, G / Rice, L / Richards, E / Rigamonti, A / Rosenberg, M / Rossella, M / Rubbia, C / Sala, P / Sapienza, P / Savage, G / Scaramelli, A / Scarpelli, A / Schmitz, D / Schukraft, A / Sergiampietri, F / Sirri, G / Smedley, J S / Soha, A K / Spanu, M / Stanco, L / Stewart, J / Suarez, N B / Sutera, C / Tanaka, H A / Tenti, M / Terao, K / Terranova, F / Togo, V / Torretta, D / Torti, M / Tortorici, F / Tosi, N / Tsai, Y-T / Tufanli, S / Turcato, M / Usher, T / Varanini, F / Ventura, S / Vercellati, F / Vicenzi, M / Vignoli, C / Viren, B / Warner, D / Williams, Z / Wilson, R J / Wilson, P / Wolfs, J / Wongjirad, T / Wood, A / Worcester, E / Worcester, M / Wospakrik, M / Yu, H / Yu, J / Zani, A / Zatti, P G / Zennamo, J / Zettlemoyer, J C / Zhang, C / Zucchelli, S / Zuckerbrot, M

    The European physical journal. C, Particles and fields

    2023  Volume 83, Issue 6, Page(s) 467

    Abstract: The ICARUS collaboration employed the 760-ton T600 detector in a successful 3-year physics run at the underground LNGS laboratory, performing a sensitive search for LSND-like ... ...

    Abstract The ICARUS collaboration employed the 760-ton T600 detector in a successful 3-year physics run at the underground LNGS laboratory, performing a sensitive search for LSND-like anomalous
    Language English
    Publishing date 2023-06-04
    Publishing country France
    Document type Journal Article
    ZDB-ID 1459069-4
    ISSN 1434-6052 ; 1434-6044
    ISSN (online) 1434-6052
    ISSN 1434-6044
    DOI 10.1140/epjc/s10052-023-11610-y
    Database MEDical Literature Analysis and Retrieval System OnLINE

    More links

    Kategorien

  4. Article ; Online: Cosmic Ray Background Removal With Deep Neural Networks in SBND.

    Acciarri, R / Adams, C / Andreopoulos, C / Asaadi, J / Babicz, M / Backhouse, C / Badgett, W / Bagby, L / Barker, D / Basque, V / Bazetto, M C Q / Betancourt, M / Bhanderi, A / Bhat, A / Bonifazi, C / Brailsford, D / Brandt, A G / Brooks, T / Carneiro, M F /
    Chen, Y / Chen, H / Chisnall, G / Crespo-Anadón, J I / Cristaldo, E / Cuesta, C / de Icaza Astiz, I L / De Roeck, A / de Sá Pereira, G / Del Tutto, M / Di Benedetto, V / Ereditato, A / Evans, J J / Ezeribe, A C / Fitzpatrick, R S / Fleming, B T / Foreman, W / Franco, D / Furic, I / Furmanski, A P / Gao, S / Garcia-Gamez, D / Frandini, H / Ge, G / Gil-Botella, I / Gollapinni, S / Goodwin, O / Green, P / Griffith, W C / Guenette, R / Guzowski, P / Ham, T / Henzerling, J / Holin, A / Howard, B / Jones, R S / Kalra, D / Karagiorgi, G / Kashur, L / Ketchum, W / Kim, M J / Kudryavtsev, V A / Larkin, J / Lay, H / Lepetic, I / Littlejohn, B R / Louis, W C / Machado, A A / Malek, M / Mardsen, D / Mariani, C / Marinho, F / Mastbaum, A / Mavrokoridis, K / McConkey, N / Meddage, V / Méndez, D P / Mettler, T / Mistry, K / Mogan, A / Molina, J / Mooney, M / Mora, L / Moura, C A / Mousseau, J / Navrer-Agasson, A / Nicolas-Arnaldos, F J / Nowak, J A / Palamara, O / Pandey, V / Pater, J / Paulucci, L / Pimentel, V L / Psihas, F / Putnam, G / Qian, X / Raguzin, E / Ray, H / Reggiani-Guzzo, M / Rivera, D / Roda, M / Ross-Lonergan, M / Scanavini, G / Scarff, A / Schmitz, D W / Schukraft, A / Segreto, E / Soares Nunes, M / Soderberg, M / Söldner-Rembold, S / Spitz, J / Spooner, N J C / Stancari, M / Stenico, G V / Szelc, A / Tang, W / Tena Vidal, J / Torretta, D / Toups, M / Touramanis, C / Tripathi, M / Tufanli, S / Tyley, E / Valdiviesso, G A / Worcester, E / Worcester, M / Yarbrough, G / Yu, J / Zamorano, B / Zennamo, J / Zglam, A

    Frontiers in artificial intelligence

    2021  Volume 4, Page(s) 649917

    Abstract: In liquid argon time projection chambers exposed to neutrino beams and running on or near surface levels, cosmic muons, and other cosmic particles are incident on the detectors while a single neutrino-induced event is being recorded. In practice, this ... ...

    Abstract In liquid argon time projection chambers exposed to neutrino beams and running on or near surface levels, cosmic muons, and other cosmic particles are incident on the detectors while a single neutrino-induced event is being recorded. In practice, this means that data from surface liquid argon time projection chambers will be dominated by cosmic particles, both as a source of event triggers and as the majority of the particle count in true neutrino-triggered events. In this work, we demonstrate a novel application of deep learning techniques to remove these background particles by applying deep learning on full detector images from the SBND detector, the near detector in the Fermilab Short-Baseline Neutrino Program. We use this technique to identify, on a pixel-by-pixel level, whether recorded activity originated from cosmic particles or neutrino interactions.
    Language English
    Publishing date 2021-08-24
    Publishing country Switzerland
    Document type Journal Article
    ISSN 2624-8212
    ISSN (online) 2624-8212
    DOI 10.3389/frai.2021.649917
    Database MEDical Literature Analysis and Retrieval System OnLINE

    More links

    Kategorien

  5. Article ; Online: Search for Sterile Neutrinos in MINOS and MINOS+ Using a Two-Detector Fit.

    Adamson, P / Anghel, I / Aurisano, A / Barr, G / Bishai, M / Blake, A / Bock, G J / Bogert, D / Cao, S V / Carroll, T J / Castromonte, C M / Chen, R / Childress, S / Coelho, J A B / Corwin, L / Cronin-Hennessy, D / de Jong, J K / De Rijck, S / Devan, A V /
    Devenish, N E / Diwan, M V / Escobar, C O / Evans, J J / Falk, E / Feldman, G J / Flanagan, W / Frohne, M V / Gabrielyan, M / Gallagher, H R / Germani, S / Gomes, R A / Goodman, M C / Gouffon, P / Graf, N / Gran, R / Grzelak, K / Habig, A / Hahn, S R / Hartnell, J / Hatcher, R / Holin, A / Huang, J / Hylen, J / Irwin, G M / Isvan, Z / James, C / Jensen, D / Kafka, T / Kasahara, S M S / Koerner, L W / Koizumi, G / Kordosky, M / Kreymer, A / Lang, K / Ling, J / Litchfield, P J / Lucas, P / Mann, W A / Marshak, M L / Mayer, N / McGivern, C / Medeiros, M M / Mehdiyev, R / Meier, J R / Messier, M D / Miller, W H / Mishra, S R / Moed Sher, S / Moore, C D / Mualem, L / Musser, J / Naples, D / Nelson, J K / Newman, H B / Nichol, R J / Nowak, J A / O'Connor, J / Orchanian, M / Pahlka, R B / Paley, J / Patterson, R B / Pawloski, G / Perch, A / Pfützner, M M / Phan, D D / Phan-Budd, S / Plunkett, R K / Poonthottathil, N / Qiu, X / Radovic, A / Rebel, B / Rosenfeld, C / Rubin, H A / Sail, P / Sanchez, M C / Schneps, J / Schreckenberger, A / Schreiner, P / Sharma, R / Sousa, A / Tagg, N / Talaga, R L / Thomas, J / Thomson, M A / Tian, X / Timmons, A / Todd, J / Tognini, S C / Toner, R / Torretta, D / Tzanakos, G / Urheim, J / Vahle, P / Viren, B / Weber, A / Webb, R C / White, C / Whitehead, L H / Wojcicki, S G / Zwaska, R

    Physical review letters

    2019  Volume 122, Issue 9, Page(s) 91803

    Abstract: A search for mixing between active neutrinos and light sterile neutrinos has been performed by looking for muon neutrino disappearance in two detectors at baselines of 1.04 and 735 km, using a combined MINOS and MINOS+ exposure of 16.36×10^{20} protons ... ...

    Abstract A search for mixing between active neutrinos and light sterile neutrinos has been performed by looking for muon neutrino disappearance in two detectors at baselines of 1.04 and 735 km, using a combined MINOS and MINOS+ exposure of 16.36×10^{20} protons on target. A simultaneous fit to the charged-current muon neutrino and neutral-current neutrino energy spectra in the two detectors yields no evidence for sterile neutrino mixing using a 3+1 model. The most stringent limit to date is set on the mixing parameter sin^{2}θ_{24} for most values of the sterile neutrino mass splitting Δm_{41}^{2}>10^{-4}  eV^{2}.
    Language English
    Publishing date 2019-04-01
    Publishing country United States
    Document type Journal Article
    ZDB-ID 208853-8
    ISSN 1079-7114 ; 0031-9007
    ISSN (online) 1079-7114
    ISSN 0031-9007
    DOI 10.1103/PhysRevLett.122.091803
    Database MEDical Literature Analysis and Retrieval System OnLINE

    More links

    Kategorien

  6. Article ; Online: High-precision measurement of the

    Aaltonen, T / Amerio, S / Amidei, D / Anastassov, A / Annovi, A / Antos, J / Apollinari, G / Appel, J A / Arisawa, T / Artikov, A / Asaadi, J / Ashmanskas, W / Auerbach, B / Aurisano, A / Azfar, F / Badgett, W / Bae, T / Barbaro-Galtieri, A / Barnes, V E /
    Barnett, B A / Barria, P / Bartos, P / Bauce, M / Bedeschi, F / Behari, S / Bellettini, G / Bellinger, J / Benjamin, D / Beretvas, A / Bhatti, A / Bland, K R / Blumenfeld, B / Bocci, A / Bodek, A / Bortoletto, D / Boudreau, J / Boveia, A / Brigliadori, L / Bromberg, C / Brucken, E / Budagov, J / Budd, H S / Burkett, K / Busetto, G / Bussey, P / Butti, P / Buzatu, A / Calamba, A / Camarda, S / Campanelli, M / Carls, B / Carlsmith, D / Carosi, R / Carrillo, S / Casal, B / Casarsa, M / Castro, A / Catastini, P / Cauz, D / Cavaliere, V / Cerri, A / Cerrito, L / Chen, Y C / Chertok, M / Chiarelli, G / Chlachidze, G / Cho, K / Chokheli, D / Clark, A / Clarke, C / Convery, M E / Conway, J / Corbo, M / Cordelli, M / Cox, C A / Cox, D J / Cremonesi, M / Cruz, D / Cuevas, J / Culbertson, R / d'Ascenzo, N / Datta, M / de Barbaro, P / Demortier, L / Deninno, M / D'Errico, M / Devoto, F / Di Canto, A / Di Ruzza, B / Dittmann, J R / Donati, S / D'Onofrio, M / Dorigo, M / Driutti, A / Ebina, K / Edgar, R / Elagin, A / Erbacher, R / Errede, S / Esham, B / Farrington, S / Fernández Ramos, J P / Field, R / Flanagan, G / Forrest, R / Franklin, M / Freeman, J C / Frisch, H / Funakoshi, Y / Galloni, C / Garfinkel, A F / Garosi, P / Gerberich, H / Gerchtein, E / Giagu, S / Giakoumopoulou, V / Gibson, K / Ginsburg, C M / Giokaris, N / Giromini, P / Glagolev, V / Glenzinski, D / Gold, M / Goldin, D / Golossanov, A / Gomez, G / Gomez-Ceballos, G / Goncharov, M / González López, O / Gorelov, I / Goshaw, A T / Goulianos, K / Gramellini, E / Grosso-Pilcher, C / Guimaraes da Costa, J / Hahn, S R / Han, J Y / Happacher, F / Hara, K / Hare, M / Harr, R F / Harrington-Taber, T / Hatakeyama, K / Hays, C / Heinrich, J / Herndon, M / Hocker, A / Hong, Z / Hopkins, W / Hou, S / Hughes, R E / Husemann, U / Hussein, M / Huston, J / Introzzi, G / Iori, M / Ivanov, A / James, E / Jang, D / Jayatilaka, B / Jeon, E J / Jindariani, S / Jones, M / Joo, K K / Jun, S Y / Junk, T R / Kambeitz, M / Kamon, T / Karchin, P E / Kasmi, A / Kato, Y / Ketchum, W / Keung, J / Kilminster, B / Kim, D H / Kim, H S / Kim, J E / Kim, M J / Kim, S H / Kim, S B / Kim, Y J / Kim, Y K / Kimura, N / Kirby, M / Kondo, K / Kong, D J / Konigsberg, J / Kotwal, A V / Kreps, M / Kroll, J / Kruse, M / Kuhr, T / Kurata, M / Laasanen, A T / Lammel, S / Lancaster, M / Lannon, K / Latino, G / Lee, H S / Lee, J S / Leo, S / Leone, S / Lewis, J D / Limosani, A / Lipeles, E / Lister, A / Liu, Q / Liu, T / Lockwitz, S / Loginov, A / Lucchesi, D / Lucà, A / Lueck, J / Lujan, P / Lukens, P / Lungu, G / Lys, J / Lysak, R / Madrak, R / Maestro, P / Malik, S / Manca, G / Manousakis-Katsikakis, A / Marchese, L / Margaroli, F / Marino, P / Matera, K / Mattson, M E / Mazzacane, A / Mazzanti, P / McNulty, R / Mehta, A / Mehtala, P / Menzione, A / Mesropian, C / Miao, T / Michielin, E / Mietlicki, D / Mitra, A / Miyake, H / Moed, S / Moggi, N / Moon, C S / Moore, R / Morello, M J / Mukherjee, A / Muller, Th / Murat, P / Mussini, M / Nachtman, J / Nagai, Y / Naganoma, J / Nakano, I / Napier, A / Nett, J / Nigmanov, T / Nodulman, L / Noh, S Y / Norniella, O / Oakes, L / Oh, S H / Oh, Y D / Okusawa, T / Orava, R / Ortolan, L / Pagliarone, C / Palencia, E / Palni, P / Papadimitriou, V / Parker, W / Pauletta, G / Paulini, M / Paus, C / Phillips, T J / Piacentino, G / Pianori, E / Pilot, J / Pitts, K / Plager, C / Pondrom, L / Poprocki, S / Potamianos, K / Pranko, A / Prokoshin, F / Ptohos, F / Punzi, G / Redondo Fernández, I / Renton, P / Rescigno, M / Rimondi, F / Ristori, L / Robson, A / Rodriguez, T / Rolli, S / Ronzani, M / Roser, R / Rosner, J L / Ruffini, F / Ruiz, A / Russ, J / Rusu, V / Sakumoto, W K / Sakurai, Y / Santi, L / Sato, K / Saveliev, V / Savoy-Navarro, A / Schlabach, P / Schmidt, E E / Schwarz, T / Scodellaro, L / Scuri, F / Seidel, S / Seiya, Y / Semenov, A / Sforza, F / Shalhout, S Z / Shears, T / Shepard, P F / Shimojima, M / Shochet, M / Shreyber-Tecker, I / Simonenko, A / Sliwa, K / Smith, J R / Snider, F D / Song, H / Sorin, V / St Denis, R / Stancari, M / Stentz, D / Strologas, J / Sudo, Y / Sukhanov, A / Suslov, I / Takemasa, K / Takeuchi, Y / Tang, J / Tecchio, M / Teng, P K / Thom, J / Thomson, E / Thukral, V / Toback, D / Tokar, S / Tollefson, K / Tomura, T / Torre, S / Torretta, D / Totaro, P / Trovato, M / Ukegawa, F / Uozumi, S / Vázquez, F / Velev, G / Vellidis, K / Vernieri, C / Vidal, M / Vilar, R / Vizán, J / Vogel, M / Volpi, G / Wagner, P / Wallny, R / Wang, S M / Waters, D / Wester, W C / Whiteson, D / Wicklund, A B / Wilbur, S / Williams, H H / Wilson, J S / Wilson, P / Winer, B L / Wittich, P / Wolbers, S / Wolfmeister, H / Wright, T / Wu, X / Wu, Z / Yamamoto, K / Yamato, D / Yang, T / Yang, U K / Yang, Y C / Yao, W-M / Yeh, G P / Yi, K / Yoh, J / Yorita, K / Yoshida, T / Yu, G B / Yu, I / Zanetti, A M / Zeng, Y / Zhou, C / Zucchelli, S

    Science (New York, N.Y.)

    2022  Volume 376, Issue 6589, Page(s) 170–176

    Abstract: The mass of ... ...

    Abstract The mass of the
    Language English
    Publishing date 2022-04-07
    Publishing country United States
    Document type Journal Article ; Research Support, Non-U.S. Gov't ; Research Support, U.S. Gov't, Non-P.H.S.
    ZDB-ID 128410-1
    ISSN 1095-9203 ; 0036-8075
    ISSN (online) 1095-9203
    ISSN 0036-8075
    DOI 10.1126/science.abk1781
    Database MEDical Literature Analysis and Retrieval System OnLINE

    More links

    Kategorien

  7. Article ; Online: Improved Constraints on Sterile Neutrino Mixing from Disappearance Searches in the MINOS, MINOS+, Daya Bay, and Bugey-3 Experiments.

    Adamson, P / An, F P / Anghel, I / Aurisano, A / Balantekin, A B / Band, H R / Barr, G / Bishai, M / Blake, A / Blyth, S / Cao, G F / Cao, J / Cao, S V / Carroll, T J / Castromonte, C M / Chang, J F / Chang, Y / Chen, H S / Chen, R /
    Chen, S M / Chen, Y / Chen, Y X / Cheng, J / Cheng, Z K / Cherwinka, J J / Childress, S / Chu, M C / Chukanov, A / Coelho, J A B / Cummings, J P / Dash, N / De Rijck, S / Deng, F S / Ding, Y Y / Diwan, M V / Dohnal, T / Dolzhikov, D / Dove, J / Dvořák, M / Dwyer, D A / Evans, J J / Feldman, G J / Flanagan, W / Gabrielyan, M / Gallo, J P / Germani, S / Gomes, R A / Gonchar, M / Gong, G H / Gong, H / Gouffon, P / Graf, N / Grzelak, K / Gu, W Q / Guo, J Y / Guo, L / Guo, X H / Guo, Y H / Guo, Z / Habig, A / Hackenburg, R W / Hahn, S R / Hans, S / Hartnell, J / Hatcher, R / He, M / Heeger, K M / Heng, Y K / Higuera, A / Holin, A / Hor, Y K / Hsiung, Y B / Hu, B Z / Hu, J R / Hu, T / Hu, Z J / Huang, H X / Huang, J / Huang, X T / Huang, Y B / Huber, P / Jaffe, D E / Jen, K L / Ji, X L / Ji, X P / Johnson, R A / Jones, D / Kang, L / Kettell, S H / Koerner, L W / Kohn, S / Kordosky, M / Kramer, M / Kreymer, A / Lang, K / Langford, T J / Lee, J / Lee, J H C / Lei, R T / Leitner, R / Leung, J K C / Li, F / Li, H L / Li, J J / Li, Q J / Li, S / Li, S C / Li, S J / Li, W D / Li, X N / Li, X Q / Li, Y F / Li, Z B / Liang, H / Lin, C J / Lin, G L / Lin, S / Ling, J J / Link, J M / Littenberg, L / Littlejohn, B R / Liu, J C / Liu, J L / Liu, Y / Liu, Y H / Lu, C / Lu, H Q / Lu, J S / Lucas, P / Luk, K B / Ma, X B / Ma, X Y / Ma, Y Q / Mann, W A / Marshak, M L / Marshall, C / Martinez Caicedo, D A / Mayer, N / McDonald, K T / McKeown, R D / Mehdiyev, R / Meier, J R / Meng, Y / Miller, W H / Mills, G / Mora Lepin, L / Naples, D / Napolitano, J / Naumov, D / Naumova, E / Nelson, J K / Nichol, R J / O'Connor, J / Ochoa-Ricoux, J P / Olshevskiy, A / Pahlka, R B / Pan, H-R / Park, J / Patton, S / Pavlović, Ž / Pawloski, G / Peng, J C / Perch, A / Pfützner, M M / Phan, D D / Plunkett, R K / Poonthottathil, N / Pun, C S J / Qi, F Z / Qi, M / Qian, X / Qiu, X / Radovic, A / Raper, N / Ren, J / Reveco, C Morales / Rosero, R / Roskovec, B / Ruan, X C / Sail, P / Sanchez, M C / Schneps, J / Schreckenberger, A / Shaheed, N / Sharma, R / Sousa, A / Steiner, H / Sun, J L / Tagg, N / Thomas, J / Thomson, M A / Timmons, A / Tmej, T / Todd, J / Tognini, S C / Toner, R / Torretta, D / Treskov, K / Tse, W-H / Tull, C E / Vahle, P / Viren, B / Vorobel, V / Wang, C H / Wang, J / Wang, M / Wang, N Y / Wang, R G / Wang, W / Wang, X / Wang, Y / Wang, Y F / Wang, Z / Wang, Z M / Weber, A / Wei, H Y / Wei, L H / Wen, L J / Whisnant, K / White, C / Whitehead, L H / Wojcicki, S G / Wong, H L H / Wong, S C F / Worcester, E / Wu, D R / Wu, F L / Wu, Q / Wu, W J / Xia, D M / Xie, Z Q / Xing, Z Z / Xu, J L / Xu, T / Xue, T / Yang, C G / Yang, L / Yang, Y Z / Yao, H F / Ye, M / Yeh, M / Young, B L / Yu, H Z / Yu, Z Y / Yue, B B / Zeng, S / Zeng, Y / Zhan, L / Zhang, C / Zhang, F Y / Zhang, H H / Zhang, J W / Zhang, Q M / Zhang, X T / Zhang, Y M / Zhang, Y X / Zhang, Y Y / Zhang, Z J / Zhang, Z P / Zhang, Z Y / Zhao, J / Zhou, L / Zhuang, H L

    Physical review letters

    2020  Volume 125, Issue 7, Page(s) 71801

    Abstract: Searches for electron antineutrino, muon neutrino, and muon antineutrino disappearance driven by sterile neutrino mixing have been carried out by the Daya Bay and MINOS+ collaborations. This Letter presents the combined results of these searches, along ... ...

    Abstract Searches for electron antineutrino, muon neutrino, and muon antineutrino disappearance driven by sterile neutrino mixing have been carried out by the Daya Bay and MINOS+ collaborations. This Letter presents the combined results of these searches, along with exclusion results from the Bugey-3 reactor experiment, framed in a minimally extended four-neutrino scenario. Significantly improved constraints on the θ_{μe} mixing angle are derived that constitute the most constraining limits to date over five orders of magnitude in the mass-squared splitting Δm_{41}^{2}, excluding the 90% C.L. sterile-neutrino parameter space allowed by the LSND and MiniBooNE observations at 90% CL_{s} for Δm_{41}^{2}<13  eV^{2}. Furthermore, the LSND and MiniBooNE 99% C.L. allowed regions are excluded at 99% CL_{s} for Δm_{41}^{2}<1.6 eV^{2}.
    Language English
    Publishing date 2020-06-29
    Publishing country United States
    Document type Journal Article
    ZDB-ID 208853-8
    ISSN 1079-7114 ; 0031-9007
    ISSN (online) 1079-7114
    ISSN 0031-9007
    DOI 10.1103/PhysRevLett.125.071801
    Database MEDical Literature Analysis and Retrieval System OnLINE

    More links

    Kategorien

  8. Article ; Online: Search for Sterile Neutrinos Mixing with Muon Neutrinos in MINOS.

    Adamson, P / Anghel, I / Aurisano, A / Barr, G / Bishai, M / Blake, A / Bock, G J / Bogert, D / Cao, S V / Carroll, T J / Castromonte, C M / Chen, R / Childress, S / Coelho, J A B / Corwin, L / Cronin-Hennessy, D / de Jong, J K / De Rijck, S / Devan, A V /
    Devenish, N E / Diwan, M V / Escobar, C O / Evans, J J / Falk, E / Feldman, G J / Flanagan, W / Frohne, M V / Gabrielyan, M / Gallagher, H R / Germani, S / Gomes, R A / Goodman, M C / Gouffon, P / Graf, N / Gran, R / Grzelak, K / Habig, A / Hahn, S R / Hartnell, J / Hatcher, R / Holin, A / Huang, J / Hylen, J / Irwin, G M / Isvan, Z / James, C / Jensen, D / Kafka, T / Kasahara, S M S / Koizumi, G / Kordosky, M / Kreymer, A / Lang, K / Ling, J / Litchfield, P J / Lucas, P / Mann, W A / Marshak, M L / Mayer, N / McGivern, C / Medeiros, M M / Mehdiyev, R / Meier, J R / Messier, M D / Miller, W H / Mishra, S R / Moed Sher, S / Moore, C D / Mualem, L / Musser, J / Naples, D / Nelson, J K / Newman, H B / Nichol, R J / Nowak, J A / O'Connor, J / Orchanian, M / Pahlka, R B / Paley, J / Patterson, R B / Pawloski, G / Perch, A / Pfützner, M M / Phan, D D / Phan-Budd, S / Plunkett, R K / Poonthottathil, N / Qiu, X / Radovic, A / Rebel, B / Rosenfeld, C / Rubin, H A / Sail, P / Sanchez, M C / Schneps, J / Schreckenberger, A / Schreiner, P / Sharma, R / Sousa, A / Tagg, N / Talaga, R L / Thomas, J / Thomson, M A / Tian, X / Timmons, A / Todd, J / Tognini, S C / Toner, R / Torretta, D / Tzanakos, G / Urheim, J / Vahle, P / Viren, B / Weber, A / Webb, R C / White, C / Whitehead, L / Whitehead, L H / Wojcicki, S G / Zwaska, R

    Physical review letters

    2016  Volume 117, Issue 15, Page(s) 151803

    Abstract: We report results of a search for oscillations involving a light sterile neutrino over distances of 1.04 and 735 km in a ν_{μ}-dominated beam with a peak energy of 3 GeV. The data, from an exposure of 10.56×10^{20} protons on target, are analyzed using a ...

    Abstract We report results of a search for oscillations involving a light sterile neutrino over distances of 1.04 and 735 km in a ν_{μ}-dominated beam with a peak energy of 3 GeV. The data, from an exposure of 10.56×10^{20} protons on target, are analyzed using a phenomenological model with one sterile neutrino. We constrain the mixing parameters θ_{24} and Δm_{41}^{2} and set limits on parameters of the four-dimensional Pontecorvo-Maki-Nakagawa-Sakata matrix, |U_{μ4}|^{2} and |U_{τ4}|^{2}, under the assumption that mixing between ν_{e} and ν_{s} is negligible (|U_{e4}|^{2}=0). No evidence for ν_{μ}→ν_{s} transitions is found and we set a world-leading limit on θ_{24} for values of Δm_{41}^{2}≲1  eV^{2}.
    Language English
    Publishing date 2016-10-07
    Publishing country United States
    Document type Journal Article
    ZDB-ID 208853-8
    ISSN 1079-7114 ; 0031-9007
    ISSN (online) 1079-7114
    ISSN 0031-9007
    DOI 10.1103/PhysRevLett.117.151803
    Database MEDical Literature Analysis and Retrieval System OnLINE

    More links

    Kategorien

  9. Article ; Online: Combined analysis of νμ disappearance and νμ→νe appearance in MINOS using accelerator and atmospheric neutrinos.

    Adamson, P / Anghel, I / Aurisano, A / Barr, G / Bishai, M / Blake, A / Bock, G J / Bogert, D / Cao, S V / Castromonte, C M / Cherdack, D / Childress, S / Coelho, J A B / Corwin, L / Cronin-Hennessy, D / de Jong, J K / Devan, A V / Devenish, N E / Diwan, M V /
    Escobar, C O / Evans, J J / Falk, E / Feldman, G J / Frohne, M V / Gallagher, H R / Gomes, R A / Goodman, M C / Gouffon, P / Graf, N / Gran, R / Grzelak, K / Habig, A / Hahn, S R / Hartnell, J / Hatcher, R / Himmel, A / Holin, A / Huang, J / Hylen, J / Irwin, G M / Isvan, Z / James, C / Jensen, D / Kafka, T / Kasahara, S M S / Koizumi, G / Kordosky, M / Kreymer, A / Lang, K / Ling, J / Litchfield, P J / Lucas, P / Mann, W A / Marshak, M L / Mayer, N / McGivern, C / Medeiros, M M / Mehdiyev, R / Meier, J R / Messier, M D / Michael, D G / Miller, W H / Mishra, S R / Moed Sher, S / Moore, C D / Mualem, L / Musser, J / Naples, D / Nelson, J K / Newman, H B / Nichol, R J / Nowak, J A / O'Connor, J / Orchanian, M / Pahlka, R B / Paley, J / Patterson, R B / Pawloski, G / Perch, A / Phan-Budd, S / Plunkett, R K / Poonthottathil, N / Qiu, X / Radovic, A / Rebel, B / Rosenfeld, C / Rubin, H A / Sanchez, M C / Schneps, J / Schreckenberger, A / Schreiner, P / Sharma, R / Sousa, A / Tagg, N / Talaga, R L / Thomas, J / Thomson, M A / Tian, X / Timmons, A / Tognini, S C / Toner, R / Torretta, D / Tzanakos, G / Urheim, J / Vahle, P / Viren, B / Weber, A / Webb, R C / White, C / Whitehead, L / Whitehead, L H / Wojcicki, S G / Zwaska, R

    Physical review letters

    2014  Volume 112, Issue 19, Page(s) 191801

    Abstract: We report on a new analysis of neutrino oscillations in MINOS using the complete set of accelerator and atmospheric data. The analysis combines the ν(μ) disappearance and ν(e) appearance data using the three-flavor formalism. We measure |Δm(32)(2)| = [2 ... ...

    Abstract We report on a new analysis of neutrino oscillations in MINOS using the complete set of accelerator and atmospheric data. The analysis combines the ν(μ) disappearance and ν(e) appearance data using the three-flavor formalism. We measure |Δm(32)(2)| = [2.28-2.46] × 10(-3) eV(2) (68% C.L.) and sin(2)θ(23) = 0.35-0.65 (90% C.L.) in the normal hierarchy, and |Δm(32)(2)| = [2.32-2.53] × 10(-3) eV(2) (68% C.L.) and sin(2)θ(23) = 0.34-0.67 (90% C.L.) in the inverted hierarchy. The data also constrain δ(CP), the θ(23} octant degeneracy and the mass hierarchy; we disfavor 36% (11%) of this three-parameter space at 68% (90%) C.L.
    Language English
    Publishing date 2014-05-16
    Publishing country United States
    Document type Journal Article
    ZDB-ID 208853-8
    ISSN 1079-7114 ; 0031-9007
    ISSN (online) 1079-7114
    ISSN 0031-9007
    DOI 10.1103/PhysRevLett.112.191801
    Database MEDical Literature Analysis and Retrieval System OnLINE

    More links

    Kategorien

  10. Article ; Online: Measurement of neutrino and antineutrino oscillations using beam and atmospheric data in MINOS.

    Adamson, P / Anghel, I / Backhouse, C / Barr, G / Bishai, M / Blake, A / Bock, G J / Bogert, D / Cao, S V / Castromonte, C M / Childress, S / Coelho, J A B / Corwin, L / Cronin-Hennessy, D / de Jong, J K / Devan, A V / Devenish, N E / Diwan, M V / Escobar, C O /
    Evans, J J / Falk, E / Feldman, G J / Frohne, M V / Gallagher, H R / Gomes, R A / Goodman, M C / Gouffon, P / Graf, N / Gran, R / Grzelak, K / Habig, A / Hahn, S R / Hartnell, J / Hatcher, R / Himmel, A / Holin, A / Hylen, J / Irwin, G M / Isvan, Z / James, C / Jensen, D / Kafka, T / Kasahara, S M S / Koizumi, G / Kordosky, M / Kreymer, A / Lang, K / Ling, J / Litchfield, P J / Lucas, P / Mann, W A / Marshak, M L / Mathis, M / Mayer, N / McGowan, A M / Medeiros, M M / Mehdiyev, R / Meier, J R / Messier, M D / Michael, D G / Miller, W H / Mishra, S R / Moed Sher, S / Moore, C D / Mualem, L / Musser, J / Naples, D / Nelson, J K / Newman, H B / Nichol, R J / Nowak, J A / O'Connor, J / Oliver, W P / Orchanian, M / Pahlka, R B / Paley, J / Patterson, R B / Pawloski, G / Phan-Budd, S / Plunkett, R K / Qiu, X / Radovic, A / Rebel, B / Rosenfeld, C / Rubin, H A / Sanchez, M C / Schneps, J / Schreckenberger, A / Schreiner, P / Sharma, R / Sousa, A / Tagg, N / Talaga, R L / Thomas, J / Thomson, M A / Tinti, G / Tognini, S C / Toner, R / Torretta, D / Tzanakos, G / Urheim, J / Vahle, P / Viren, B / Weber, A / Webb, R C / White, C / Whitehead, L / Whitehead, L H / Wojcicki, S G / Zwaska, R

    Physical review letters

    2013  Volume 110, Issue 25, Page(s) 251801

    Abstract: We report measurements of oscillation parameters from ν(μ) and ν(μ) disappearance using beam and atmospheric data from MINOS. The data comprise exposures of 10.71×10(20) protons on target in the ν(μ)-dominated beam, 3.36×10(20) protons on target in the ν( ...

    Abstract We report measurements of oscillation parameters from ν(μ) and ν(μ) disappearance using beam and atmospheric data from MINOS. The data comprise exposures of 10.71×10(20) protons on target in the ν(μ)-dominated beam, 3.36×10(20) protons on target in the ν(μ)-enhanced beam, and 37.88 kton yr of atmospheric neutrinos. Assuming identical ν and ν oscillation parameters, we measure |Δm2| = (2.41(-0.10)(+0.09))×10(-3)  eV2 and sin2(2θ) = 0.950(-0.036)(+0.035). Allowing independent ν and ν oscillations, we measure antineutrino parameters of |Δm2| = (2.50(-0.25)(+0.23))×10(-3)  eV2 and sin2(2θ) = 0.97(-0.08)(+0.03), with minimal change to the neutrino parameters.
    Language English
    Publishing date 2013-06-21
    Publishing country United States
    Document type Journal Article
    ZDB-ID 208853-8
    ISSN 1079-7114 ; 0031-9007
    ISSN (online) 1079-7114
    ISSN 0031-9007
    DOI 10.1103/PhysRevLett.110.251801
    Database MEDical Literature Analysis and Retrieval System OnLINE

    More links

    Kategorien

To top