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Insertion of STC into TRT at the Department of Physics, Oxford
Credit: CERN

Professor Dr.rer.nat. Dipl.Phys. Alfons Weber FInstP, MA Ox

Visiting Professor

Research theme

  • Fundamental particles and interactions

Sub department

  • Particle Physics

Research groups

  • Accelerator Neutrinos
Alfons.Weber@physics.ox.ac.uk
Telephone: +49 (6131) 39 24175
Denys Wilkinson Building
AlfonsWeber@JGUMainz
  • About
  • Research
  • Teaching
  • Committees
  • Publications

Constraints on large extra dimensions from the MINOS experiment

PHYSICAL REVIEW D 94:11 (2016) ARTN 111101

Authors:

P Adamson, I Anghel, A Aurisano, G Barr, M Bishai, A Blake, GJ Bock, D Bogert, SV Cao, TJ Carroll, CM Castromonte, R Chen, S Childress, JAB Coelho, L Corwin, D Cronin-Hennessy, JK de Jong, S De Rijck, AV Devan, NE Devenish, MV Diwan, CO Escobar, JJ Evans, E Falk, GJ Feldman, W Flanagan, MV Frohne, M Gabrielyan, HR Gallagher, S Germani, RA Gomes, MC Goodman, P Gouffon, N Graf, R Gran, K Grzelak, A Habig, SR Hahn, J Hartnell, R Hatcher, A Holin, J Huang, J Hylen, GM Irwin, Z Isvan, C James, D Jensen, T Kafka, SMS Kasahara, G Koizumi, M Kordosky, A Kreymer, K Lang, J Ling, PJ Litchfield, P Lucas, WA Mann, ML Marshak, N Mayer, C McGivern, MM Medeiros, R Mehdiyev, JR Meier, MD Messier, WH Miller, SR Mishra, SM Sher, CD Moore, L Mualem, J Musser, D Naples, JK Nelson, HB Newman, RJ Nichol, JA Nowak, J O'Connor, M Orchanian, RB Pahlka, J Paley, RB Patterson, G Pawloski, A Perch, MM Pfutzner, DD Phan, S Phan-Budd, RK Plunkett, N Poonthottathil, X Qiu, A Radovic, B Rebel, C Rosenfeld, HA Rubin, P Sail, MC Sanchez, J Schneps, A Schreckenberger, P Schreiner, R Sharma, A Sousa, N Tagg, RL Talaga, J Thomas, MA Thomson, X Tian, A Timmons, J Todd, SC Tognini, R Toner, D Torretta, G Tzanakos, J Urheim, P Vahle, B Viren, A Weber, RC Webb, C White, L Whitehead, LH Whitehead, SG Wojcicki, R Zwaska, MINOS Collaboration
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Measurement of coherent π^{+} production in low energy neutrino-carbon scattering

Physical Review Letters American Physical Society 117:19 (2016) 192501

Authors:

K Abe, C Andreopoulos, M Antonova, Giles Barr, David Coplowe, Debra Dewhurst, Stephen Dolan, Kirsty Duffy, Abraham Jacob, Xianguo Lu, Raj Shah, Antonin Vacheret, David Wark, Alfons Weber, Et Et al.

Abstract:

We report the first measurement of the flux-averaged cross section for charged current coherent πþ production on carbon for neutrino energies less than 1.5 GeV, and with a restriction on the final state phase space volume in the T2K near detector, ND280. Comparisons are made with predictions from the ReinSehgal coherent production model and the model by Alvarez-Ruso et al., the latter representing the first implementation of an instance of the new class of microscopic coherent models in a neutrino interaction Monte Carlo event generator. We observe a clear event excess above background, disagreeing with the null results reported by K2K and SciBooNE in a similar neutrino energy region. The measured flux-averaged cross sections are below those predicted by both the Rein-Sehgal and Alvarez-Ruso et al. models.
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Measurement of single pi(0) production by coherent neutral-current nu Fe interactions in the MINOS Near Detector

PHYSICAL REVIEW D 94:7 (2016) ARTN 072006

Authors:

P Adamson, I Anghel, A Aurisano, G Barr, M Bishai, A Blake, GJ Bock, D Bogert, SV Cao, TJ Carroll, CM Castromonte, R Chen, D Cherdack, S Childress, JAB Coelho, L Corwin, D Cronin-Hennessy, JK de Jong, S De Rijck, AV Devan, NE Devenish, MV Diwan, CO Escobar, JJ Evans, E Falk, GJ Feldman, W Flanagan, MV Frohne, M Gabrielyan, HR Gallagher, S Germani, RA Gomes, MC Goodman, P Gouffon, N Graf, R Gran, K Grzelak, A Habig, SR Hahn, J Hartnell, R Hatcher, A Holin, J Huang, J Hylen, GM Irwin, Z Isvan, C James, D Jensen, T Kafka, SMS Kasahara, G Koizumi, M Kordosky, A Kreymer, K Lang, J Ling, PJ Litchfield, P Lucas, WA Mann, ML Marshak, N Mayer, C McGivern, MM Medeiros, R Mehdiyev, JR Meier, MD Messier, WH Miller, SR Mishra, SM Sher, CD Moore, L Mualem, J Musser, D Naples, JK Nelson, HB Newman, RJ Nichol, JA Nowak, J O'Connor, WP Oliver, M Orchanian, RB Pahlka, J Paley, RB Patterson, G Pawloski, A Perch, MM Pfutzner, DD Phan, S Phan-Budd, RK Plunkett, N Poonthottathil, X Qiu, A Radovic, B Rebel, C Rosenfeld, HA Rubin, P Sail, MC Sanchez, J Schneps, A Schreckenberger, P Schreiner, R Sharma, A Sousa, N Tagg, RL Talaga, J Thomas, MA Thomson, X Tian, A Timmons, J Todd, SC Tognini, R Toner, D Torretta, G Tzanakos, J Urheim, P Vahle, B Viren, A Weber, RC Webb, C White, L Whitehead, LH Whitehead, SG Wojcicki, R Zwaska, MINOS Collaboration
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Limits on Active to Sterile Neutrino Oscillations from Disappearance Searches in the MINOS, Daya Bay, and Bugey-3 Experiments.

Physical review letters 117:15 (2016) 151801-151801

Authors:

P Adamson, FP An, I Anghel, A Aurisano, AB Balantekin, HR Band, G Barr, M Bishai, A Blake, S Blyth, GJ Bock, D Bogert, D Cao, GF Cao, J Cao, SV Cao, TJ Carroll, CM Castromonte, WR Cen, YL Chan, JF Chang, LC Chang, Y Chang, HS Chen, QY Chen, R Chen, SM Chen, Y Chen, YX Chen, J Cheng, J-H Cheng, YP Cheng, ZK Cheng, JJ Cherwinka, S Childress, MC Chu, A Chukanov, JAB Coelho, L Corwin, D Cronin-Hennessy, JP Cummings, J de Arcos, S De Rijck, ZY Deng, AV Devan, NE Devenish, XF Ding, YY Ding, MV Diwan, M Dolgareva, J Dove, DA Dwyer, WR Edwards, CO Escobar, JJ Evans, E Falk, GJ Feldman, W Flanagan, MV Frohne, M Gabrielyan, HR Gallagher, S Germani, R Gill, RA Gomes, M Gonchar, GH Gong, H Gong, MC Goodman, P Gouffon, N Graf, R Gran, M Grassi, K Grzelak, WQ Gu, MY Guan, L Guo, RP Guo, XH Guo, Z Guo, A Habig, RW Hackenburg, SR Hahn, R Han, S Hans, J Hartnell, R Hatcher, M He, KM Heeger, YK Heng, A Higuera, A Holin, YK Hor, YB Hsiung, BZ Hu, T Hu, W Hu, EC Huang, HX Huang, J Huang, XT Huang, P Huber, W Huo, G Hussain, J Hylen, GM Irwin, Z Isvan, DE Jaffe, P Jaffke, C James, KL Jen, D Jensen, S Jetter, XL Ji, XP Ji, JB Jiao, RA Johnson, JK de Jong, J Joshi, T Kafka, L Kang, SMS Kasahara, SH Kettell, S Kohn, G Koizumi, M Kordosky, M Kramer, A Kreymer, KK Kwan, MW Kwok, T Kwok, K Lang, TJ Langford, K Lau, L Lebanowski, J Lee, JHC Lee, RT Lei, R Leitner, JKC Leung, C Li, DJ Li, F Li, GS Li, QJ Li, S Li, SC Li, WD Li, XN Li, YF Li, ZB Li, H Liang, CJ Lin, GL Lin, S Lin, SK Lin, Y-C Lin, JJ Ling, JM Link, PJ Litchfield, L Littenberg, BR Littlejohn, DW Liu, JC Liu, JL Liu, CW Loh, C Lu, HQ Lu, JS Lu, P Lucas, KB Luk, Z Lv, QM Ma, XB Ma, XY Ma, YQ Ma, Y Malyshkin, WA Mann, ML Marshak, DA Martinez Caicedo, N Mayer, KT McDonald, C McGivern, RD McKeown, MM Medeiros, R Mehdiyev, JR Meier, MD Messier, WH Miller, SR Mishra, I Mitchell, M Mooney, CD Moore, L Mualem, J Musser, Y Nakajima, D Naples, J Napolitano, D Naumov, E Naumova, JK Nelson, HB Newman, HY Ngai, RJ Nichol, Z Ning, JA Nowak, J O'Connor, JP Ochoa-Ricoux, A Olshevskiy, M Orchanian, RB Pahlka, J Paley, H-R Pan, J Park, RB Patterson, S Patton, G Pawloski, V Pec, JC Peng, A Perch, MM Pfützner, DD Phan, S Phan-Budd, L Pinsky, RK Plunkett, N Poonthottathil, CSJ Pun, FZ Qi, M Qi, X Qian, X Qiu, A Radovic, N Raper, B Rebel, J Ren, C Rosenfeld, R Rosero, B Roskovec, XC Ruan, HA Rubin, P Sail, MC Sanchez, J Schneps, A Schreckenberger, P Schreiner, R Sharma, S Moed Sher, A Sousa, H Steiner, GX Sun, JL Sun, N Tagg, RL Talaga, W Tang, D Taychenachev, J Thomas, MA Thomson, X Tian, A Timmons, J Todd, SC Tognini, R Toner, D Torretta, K Treskov, KV Tsang, CE Tull, G Tzanakos, J Urheim, P Vahle, N Viaux, B Viren, V Vorobel, CH Wang, M Wang, NY Wang, RG Wang, W Wang, X Wang, YF Wang, Z Wang, ZM Wang, RC Webb, A Weber, HY Wei, LJ Wen, K Whisnant, C White, L Whitehead, LH Whitehead, T Wise, SG Wojcicki, HLH Wong, SCF Wong, E Worcester, C-H Wu, Q Wu, WJ Wu, DM Xia, JK Xia, ZZ Xing, JL Xu, JY Xu, Y Xu, T Xue, CG Yang, H Yang, L Yang, MS Yang, MT Yang, M Ye, Z Ye, M Yeh, BL Young, ZY Yu, S Zeng, L Zhan, C Zhang, HH Zhang, JW Zhang, QM Zhang, XT Zhang, YM Zhang, YX Zhang, ZJ Zhang, ZP Zhang, ZY Zhang, J Zhao, QW Zhao, YB Zhao, WL Zhong, L Zhou, N Zhou, HL Zhuang, JH Zou

Abstract:

Searches for a light sterile neutrino have been performed independently by the MINOS and the Daya Bay experiments using the muon (anti)neutrino and electron antineutrino disappearance channels, respectively. In this Letter, results from both experiments are combined with those from the Bugey-3 reactor neutrino experiment to constrain oscillations into light sterile neutrinos. The three experiments are sensitive to complementary regions of parameter space, enabling the combined analysis to probe regions allowed by the Liquid Scintillator Neutrino Detector (LSND) and MiniBooNE experiments in a minimally extended four-neutrino flavor framework. Stringent limits on sin^{2}2θ_{μe} are set over 6 orders of magnitude in the sterile mass-squared splitting Δm_{41}^{2}. The sterile-neutrino mixing phase space allowed by the LSND and MiniBooNE experiments is excluded for Δm_{41}^{2}<0.8  eV^{2} at 95%  CL_{s}.
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Search for sterile neutrinos mixing with muon neutrinos in MINOS

Physical Review Letters American Physical Society 117:15 (2016) 151803

Authors:

P Adamson, I Anghel, A Aurisano, Giles Barr, M Bishai, A Blake, GJ Bock, D Bogert, SV Cao, TJ Carroll, CM Castromonte, R Chen, S Childress, JA Coelho, L Corwin, D Cronin-Hennessy, JK de Jong, S De Rijck, AV Devan, NE Devenish, MV Diwan, CO Escobar, JJ Evans, E Falk, GJ Feldman, W Flanagan, MV Frohne, M Gabrielyan, HR Gallagher, S Germani, RA Gomes, MC Goodman, P Gouffon, N Graf, R Gran, K Grzelak, A Habig, SR Hahn, J Hartnell, R Hatcher, A Holin, J Huang, J Hylen, GM Irwin, Z Isvan, C James, D Jensen, T Kafka, SM Kasahara, G Koizumi

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}.
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