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Table representation of search results timeline featuring number of search results per year.
Year | Number of Results |
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2014 | 2 |
2020 | 2 |
2021 | 1 |
2022 | 1 |
2024 | 0 |
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6 results
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Page 1
Scintillation light detection in the 6-m drift-length ProtoDUNE Dual Phase liquid argon TPC.
Eur Phys J C Part Fields. 2022;82(7):618. doi: 10.1140/epjc/s10052-022-10549-w. Epub 2022 Jul 16.
Eur Phys J C Part Fields. 2022.
PMID: 35859696
Free PMC article.
Improved Constraints on Sterile Neutrino Mixing from Disappearance Searches in the MINOS, MINOS+, Daya Bay, and Bugey-3 Experiments.
Adamson P, An FP, Anghel I, Aurisano A, Balantekin AB, Band HR, Barr G, Bishai M, Blake A, Blyth S, Cao GF, Cao J, Cao SV, Carroll TJ, Castromonte CM, Chang JF, Chang Y, Chen HS, Chen R, Chen SM, Chen Y, Chen YX, Cheng J, Cheng ZK, Cherwinka JJ, Childress S, Chu MC, Chukanov A, Coelho JAB, Cummings JP, Dash N, De Rijck S, Deng FS, Ding YY, Diwan MV, Dohnal T, Dolzhikov D, Dove J, Dvořák M, Dwyer DA, Evans JJ, Feldman GJ, Flanagan W, Gabrielyan M, Gallo JP, Germani S, Gomes RA, Gonchar M, Gong GH, Gong H, Gouffon P, Graf N, Grzelak K, Gu WQ, Guo JY, Guo L, Guo XH, Guo YH, Guo Z, Habig A, Hackenburg RW, Hahn SR, Hans S, Hartnell J, Hatcher R, He M, Heeger KM, Heng YK, Higuera A, Holin A, Hor YK, Hsiung YB, Hu BZ, Hu JR, Hu T, Hu ZJ, Huang HX, Huang J, Huang XT, Huang YB, Huber P, Jaffe DE, Jen KL, Ji XL, Ji XP, Johnson RA, Jones D, Kang L, Kettell SH, Koerner LW, Kohn S, Kordosky M, Kramer M, Kreymer A, Lang K, Langford TJ, Lee J, Lee JHC, Lei RT, Leitner R, Leung JKC, Li F, Li HL, Li JJ, Li QJ, Li S, Li SC, Li SJ, Li WD, Li XN, Li XQ, Li YF, Li ZB, Liang H, Lin CJ, Lin GL, Lin S, Ling JJ, Link JM, Littenberg L, Littlejohn BR, Liu JC, Liu JL, Liu Y, Liu YH, Lu C, Lu HQ, Lu JS, Lucas…
See abstract for full author list ➔
Adamson P, et al.
Phys Rev Lett. 2020 Aug 14;125(7):071801. doi: 10.1103/PhysRevLett.125.071801.
Phys Rev Lett. 2020.
PMID: 32857527
Significantly improved constraints on the teta_{mue} mixing angle are derived that constitute the most constraining limits to date over five orders of magnitude in the mass-squared splitting deltam_{41}^{2}, excluding the 90% C.L. sterile-neutrino parameter space allowed b …
Significantly improved constraints on the teta_{mue} mixing angle are derived that constitute the most constraining limits to date over five …
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Prospects for beyond the Standard Model physics searches at the Deep Underground Neutrino Experiment: DUNE Collaboration.
Abi B, Acciarri R, Acero MA, Adamov G, Adams D, Adinolfi M, Ahmad Z, Ahmed J, Alion T, Monsalve SA, Alt C, Anderson J, Andreopoulos C, Andrews MP, Andrianala F, Andringa S, Ankowski A, Antonova M, Antusch S, Aranda-Fernandez A, Ariga A, Arnold LO, Arroyave MA, Asaadi J, Aurisano A, Aushev V, Autiero D, Azfar F, Back H, Back JJ, Backhouse C, Baesso P, Bagby L, Bajou R, Balasubramanian S, Baldi P, Bambah B, Barao F, Barenboim G, Barker GJ, Barkhouse W, Barnes C, Barr G, Monarca JB, Barros N, Barrow JL, Bashyal A, Basque V, Bay F, Alba JLB, Beacom JF, Bechetoille E, Behera B, Bellantoni L, Bellettini G, Bellini V, Beltramello O, Belver D, Benekos N, Neves FB, Berger J, Berkman S, Bernardini P, Berner RM, Berns H, Bertolucci S, Betancourt M, Bezawada Y, Bhattacharjee M, Bhuyan B, Biagi S, Bian J, Biassoni M, Biery K, Bilki B, Bishai M, Bitadze A, Blake A, Siffert BB, Blaszczyk FDM, Blazey GC, Blucher E, Boissevain J, Bolognesi S, Bolton T, Bonesini M, Bongrand M, Bonini F, Booth A, Booth C, Bordoni S, Borkum A, Boschi T, Bostan N, Bour P, Boyd SB, Boyden D, Bracinik J, Braga D, Brailsford D, Brandt A, Bremer J, Brew C, Brianne E, Brice SJ, Brizzolari C, Bromberg C, Brooijmans G, Brook…
See abstract for full author list ➔
Abi B, et al.
Eur Phys J C Part Fields. 2021;81(4):322. doi: 10.1140/epjc/s10052-021-09007-w. Epub 2021 Apr 16.
Eur Phys J C Part Fields. 2021.
PMID: 34720713
Free PMC article.
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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 SV, Carroll TJ, Castromonte CM, Chen R, Childress S, Coelho JAB, De Rijck S, Evans JJ, Feldman GJ, Flanagan W, Gabrielyan M, Germani S, Gomes RA, Gouffon P, Graf N, Grzelak K, Habig A, Hahn SR, Hartnell J, Hatcher R, Holin A, Huang J, Koerner LW, Kordosky M, Kreymer A, Lang K, Lucas P, Mann WA, Marshak ML, Mayer N, Mehdiyev R, Meier JR, Miller WH, Mills G, Naples D, Nelson JK, Nichol RJ, O'Connor J, Pahlka RB, Pavlović Ž, Pawloski G, Perch A, Pfützner MM, Phan DD, Plunkett RK, Poonthottathil N, Qiu X, Radovic A, Sail P, Sanchez MC, Schneps J, Schreckenberger A, Sharma R, Sousa A, Tagg N, Thomas J, Thomson MA, Timmons A, Todd J, Tognini SC, Toner R, Torretta D, Vahle P, Weber A, Whitehead LH, Wojcicki SG; <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mi>MINOS</mi><mo>+</mo></mrow></math> Collaboration.
Adamson P, et al.
Phys Rev Lett. 2020 Sep 25;125(13):131802. doi: 10.1103/PhysRevLett.125.131802.
Phys Rev Lett. 2020.
PMID: 33034464
The measurement of the disappearance of nu_{mu} and the appearance of nu_{e} events between the Near and Far detectors yields |deltam_{32}^{2}|=2.40_{-0.09}^{+0.08}(2.45_{-0.08}^{+0.07})10^{-3} eV^{2} and sin^{2}teta_{23}=0.43_{-0.04}^{+0.20}(0.42_{-0.03}^{+0.07}) at 68% C …
The measurement of the disappearance of nu_{mu} and the appearance of nu_{e} events between the Near and Far detectors yields |deltam_{32}^{ …
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Measurement of ratios of numu charged-current cross sections on C, Fe, and Pb to CH at neutrino energies 2-20 GeV.
Tice BG, Datta M, Mousseau J, Aliaga L, Altinok O, Barrios Sazo MG, Betancourt M, Bodek A, Bravar A, Brooks WK, Budd H, Bustamante MJ, Butkevich A, Martinez Caicedo DA, Castromonte CM, Christy ME, Chvojka J, da Motta H, Devan J, Dytman SA, Díaz GA, Eberly B, Felix J, Fields L, Fiorentini GA, Gago AM, Gallagher H, Gran R, Harris DA, Higuera A, Hurtado K, Jerkins M, Kafka T, Kordosky M, Kulagin SA, Le T, Maggi G, Maher E, Manly S, Mann WA, Marshall CM, Martin Mari C, McFarland KS, McGivern CL, McGowan AM, Miller J, Mislivec A, Morfín JG, Muhlbeier T, Naples D, Nelson JK, Norrick A, Osta J, Palomino JL, Paolone V, Park J, Patrick CE, Perdue GN, Rakotondravohitra L, Ransome RD, Ray H, Ren L, Rodrigues PA, Savage DG, Schellman H, Schmitz DW, Simon C, Snider FD, Solano Salinas CJ, Tagg N, Valencia E, Velásquez JP, Walton T, Wolcott J, Zavala G, Zhang D, Ziemer BP; MINERvA Collaboration.
Tice BG, et al.
Phys Rev Lett. 2014 Jun 13;112(23):231801. doi: 10.1103/PhysRevLett.112.231801. Epub 2014 Jun 9.
Phys Rev Lett. 2014.
PMID: 24972195
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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 GJ, Bogert D, Cao SV, Castromonte CM, Cherdack D, Childress S, Coelho JA, Corwin L, Cronin-Hennessy D, de Jong JK, Devan AV, Devenish NE, Diwan MV, Escobar CO, Evans JJ, Falk E, Feldman GJ, Frohne MV, Gallagher HR, Gomes RA, Goodman MC, Gouffon P, Graf N, Gran R, Grzelak K, Habig A, Hahn SR, Hartnell J, Hatcher R, Himmel A, Holin A, Huang J, Hylen J, Irwin GM, Isvan Z, James C, Jensen D, Kafka T, Kasahara SM, Koizumi G, Kordosky M, Kreymer A, Lang K, Ling J, Litchfield PJ, Lucas P, Mann WA, Marshak ML, Mayer N, McGivern C, Medeiros MM, Mehdiyev R, Meier JR, Messier MD, Michael DG, Miller WH, Mishra SR, Moed Sher S, Moore CD, Mualem L, Musser J, Naples D, Nelson JK, Newman HB, Nichol RJ, Nowak JA, O'Connor J, Orchanian M, Pahlka RB, Paley J, Patterson RB, Pawloski G, Perch A, Phan-Budd S, Plunkett RK, Poonthottathil N, Qiu X, Radovic A, Rebel B, Rosenfeld C, Rubin HA, Sanchez MC, Schneps J, Schreckenberger A, Schreiner P, Sharma R, Sousa A, Tagg N, Talaga RL, Thomas J, Thomson MA, Tian X, Timmons A, Tognini SC, Toner R, Torretta D, Tzanakos G, Urheim J, Vahle P, Viren B, Weber A, Webb RC, White C, Whitehead L, Whitehe…
See abstract for full author list ➔
Adamson P, et al.
Phys Rev Lett. 2014 May 16;112(19):191801. doi: 10.1103/PhysRevLett.112.191801. Epub 2014 May 12.
Phys Rev Lett. 2014.
PMID: 24877929
Free article.
The analysis combines the nu(mu) disappearance and nu(e) appearance data using the three-flavor formalism. We measure |deltam(32)(2)| = [2.28-2.46] 10(-3) eV(2) (68% C.L.) and sin(2)teta(23) = 0.35-0.65 (90% C.L.) in the normal hierarchy, and |deltam(32)(2)| = [2.32 …
The analysis combines the nu(mu) disappearance and nu(e) appearance data using the three-flavor formalism. We measure |deltam(32)(2)| = [2.2 …
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