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

Dr Tomislav Vladisavljevic

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Sub department

  • Particle Physics

Research groups

  • Accelerator Neutrinos
tomislav.vladisavljevic@physics.ox.ac.uk
Denys Wilkinson Building, room 664a
  • About
  • Publications

Updated T2K measurements of muon neutrino and antineutrino disappearance using 3.6脳1021 protons on target

Physical Review D American Physical Society (APS) 108:7 (2023) 072011

Authors:

K Abe, N Akhlaq, R Akutsu, A Ali, S Alonso Monsalve, C Alt, C Andreopoulos, M Antonova, S Aoki, T Arihara, Y Asada, Y Ashida, ET Atkin, M Barbi, GJ Barker, G Barr, D Barrow, M Batkiewicz-Kwasniak, F Bench, V Berardi, L Berns, S Bhadra, A Blanchet, A Blondel, S Bolognesi, T Bonus, S Bordoni, SB Boyd, A Bravar, C Bronner, S Bron, A Bubak, M Buizza Avanzini, JA Caballero, NF Calabria, S Cao, D Carabadjac, AJ Carter, SL Cartwright, MP Casado, MG Catanesi, A Cervera, J Chakrani, D Cherdack, PS Chong, G Christodoulou, A Chvirova, M Cicerchia, J Coleman, G Collazuol, L Cook, A Cudd, C Dalmazzone, T Daret, Yu I Davydov, A De Roeck, G De Rosa, T Dealtry, CC Delogu, C Densham, A Dergacheva, F Di Lodovico, S Dolan, D Douqa, TA Doyle, O Drapier, J Dumarchez, P Dunne, K Dygnarowicz, A Eguchi, S Emery-Schrenk, G Erofeev, A Ershova, G Eurin, D Fedorova, S Fedotov, M Feltre, AJ Finch, GA Fiorentini Aguirre, G Fiorillo, MD Fitton, JM Franco Pati帽o, M Friend, Y Fujii, Y Fukuda, Y Furui, K Fusshoeller, L Giannessi, C Giganti, V Glagolev, M Gonin, J Gonz谩lez Rosa, EAG Goodman, A Gorin, M Grassi, M Guigue, DR Hadley, JT Haigh, P Hamacher-Baumann, DA Harris, M Hartz, T Hasegawa, S Hassani, NC Hastings, Y Hayato, D Henaff, A Hiramoto, M Hogan, J Holeczek, A Holin, T Holvey, NT Hong Van, T Honjo, F Iacob, AK Ichikawa, M Ikeda, T Ishida, M Ishitsuka, HT Israel, K Iwamoto, A Izmaylov, N Izumi, M Jakkapu, B Jamieson, SJ Jenkins, C Jes煤s-Valls, JJ Jiang, P Jonsson, S Joshi, CK Jung, PB Jurj, M Kabirnezhad, AC Kaboth, T Kajita, H Kakuno, J Kameda, SP Kasetti, Y Kataoka, Y Katayama, T Katori, M Kawaue, E Kearns, M Khabibullin, A Khotjantsev, T Kikawa, H Kikutani, S King, V Kiseeva, J Kisiel, T Kobata, H Kobayashi, T Kobayashi, L Koch, S Kodama, A Konaka, LL Kormos, Y Koshio, A Kostin, T Koto, K Kowalik, Y Kudenko, Y Kudo, S Kuribayashi, R Kurjata, T Kutter, M Kuze, M La Commara, L Labarga, K Lachner, J Lagoda, SM Lakshmi, M Lamers James, M Lamoureux, A Langella, J-F Laporte, D Last, N Latham, M Laveder, L Lavitola, M Lawe, Y Lee, C Lin, S-K Lin, RP Litchfield, SL Liu, W Li, A Longhin, KR Long, A Lopez Moreno, L Ludovici, X Lu, T Lux, LN Machado, L Magaletti, K Mahn, M Malek, M Mandal, S Manly, AD Marino, L Marti-Magro, DGR Martin, M Martini, JF Martin, T Maruyama, T Matsubara, V Matveev, C Mauger, K Mavrokoridis, E Mazzucato, N McCauley, J McElwee, KS McFarland, C McGrew, J McKean, A Mefodiev, GD Megias, P Mehta, L Mellet, C Metelko, M Mezzetto, E Miller, A Minamino, O Mineev, S Mine, M Miura, L Molina Bueno, S Moriyama, S Moriyama, P Morrison, Th A Mueller, D Munford, L Munteanu, K Nagai, Y Nagai, T Nakadaira, K Nakagiri, M Nakahata, Y Nakajima, A Nakamura, H Nakamura, K Nakamura, KD Nakamura, Y Nakano, S Nakayama, T Nakaya, K Nakayoshi, CER Naseby, TV Ngoc, VQ Nguyen, K Niewczas, S Nishimori, Y Nishimura, K Nishizaki, T Nosek, F Nova, P Novella, JC Nugent, HM O鈥橩eeffe, L O鈥橲ullivan, T Odagawa, T Ogawa, R Okada, W Okinaga, K Okumura, T Okusawa, N Ospina, RA Owen, Y Oyama, V Palladino, V Paolone, M Pari, J Parlone, S Parsa, J Pasternak, M Pavin, D Payne, GC Penn, D Pershey, L Pickering, C Pidcott, G Pintaudi, C Pistillo, B Popov, K Porwit, M Posiadala-Zezula, YS Prabhu, F Pupilli, B Quilain, T Radermacher, E Radicioni, B Radics, MA Ram铆rez, PN Ratoff, M Reh, C Riccio, E Rondio, S Roth, N Roy, A Rubbia, AC Ruggeri, CA Ruggles, A Rychter, K Sakashita, F S谩nchez, G Santucci, CM Schloesser, K Scholberg, M Scott, Y Seiya, T Sekiguchi, H Sekiya, D Sgalaberna, A Shaikhiev, F Shaker, M Shiozawa, W Shorrock, A Shvartsman, N Skrobova, K Skwarczynski, D Smyczek, M Smy, JT Sobczyk, H Sobel, FJP Soler, Y Sonoda, AJ Speers, R Spina, IA Suslov, S Suvorov, A Suzuki, SY Suzuki, Y Suzuki, AA Sztuc, M Tada, S Tairafune, S Takayasu, A Takeda, Y Takeuchi, K Takifuji, HK Tanaka, Y Tanihara, M Tani, A Teklu, VV Tereshchenko, N Teshima, N Thamm, LF Thompson, W Toki, C Touramanis, T Towstego, KM Tsui, T Tsukamoto, M Tzanov, Y Uchida, M Vagins, D Vargas, M Varghese, G Vasseur, C Vilela, E Villa, WGS Vinning, U Virginet, T Vladisavljevic, T Wachala, JG Walsh, Y Wang, L Wan, D Wark, MO Wascko, A Weber, R Wendell, MJ Wilking, C Wilkinson, JR Wilson, K Wood, C Wret, J Xia, Y-H Xu, K Yamamoto, T Yamamoto, C Yanagisawa, G Yang, T Yano, K Yasutome, N Yershov, U Yevarouskaya, M Yokoyama, Y Yoshimoto, N Yoshimura, M Yu, R Zaki, A Zalewska, J Zalipska, K Zaremba, G Zarnecki, X Zhao, T Zhu, M Ziembicki, ED Zimmerman, M Zito, S Zsoldos

Measurements of neutrino oscillation parameters from the T2K experiment using $$3.6\times 10^{21}$$ protons on target

The European Physical Journal C SpringerOpen 83:9 (2023) 782

Authors:

K Abe, N Akhlaq, R Akutsu, A Ali, S Alonso Monsalve, C Alt, C Andreopoulos, M Antonova, S Aoki, T Arihara, Y Asada, Y Ashida, ET Atkin, M Barbi, GJ Barker, G Barr, D Barrow, M Batkiewicz-Kwasniak, F Bench, V Berardi, L Berns, S Bhadra, A Blanchet, A Blondel, S Bolognesi

Abstract:

We present the first measurement of differential cross sections for charged-current muon neutrino interactions on argon with one muon, two protons, and no pions in the final state. These final states are dominated by two-nucleon knockout interactions, which are complicated to model and for which there is currently limited information about the characteristics of these interactions in existing neutrino-nucleus scattering data. Detailed investigations of two-nucleon knockout are vital to support upcoming experiments exploring the nature of the neutrino. Among the different kinematic quantities measured, the opening angle between the two protons, the angle between the total proton momentum and the muon, and the total transverse momentum of the final state system are most sensitive to the underlying physics processes as embodied in various theoretical models

Scintillator ageing of the T2K near detectors from 2010 to 2021

Journal of Instrumentation IOP Publishing 17:10 (2022) P10028-P10028

Authors:

K Abe, N Akhlaq, R Akutsu, A Ali, C Alt, C Andreopoulos, M Antonova, S Aoki, T Arihara, Y Asada, Y Ashida, ET Atkin, S Ban, M Barbi, GJ Barker, G Barr, D Barrow, M Batkiewicz-Kwasniak, F Bench, V Berardi, L Berns, S Bhadra, A Blanchet, A Blondel, S Bolognesi

Abstract:

Art铆culo escrito por un elevado n煤mero de autores. Solo se referencia el que aparece en primer lugar, el nombre del grupo de colaboraci贸n si hubiere y los autores pertenecientes a la UAMThe T2K experiment widely uses plastic scintillator as a target for neutrino interactions and an active medium for the measurement of charged particles produced in neutrino interactions at its near detector complex. Over 10 years of operation the measured light yield recorded by the scintillator based subsystems has been observed to degrade by 0.9鈥2.2% per year. Extrapolation of the degradation rate through to 2040 indicates the recorded light yield should remain above the lower threshold used by the current reconstruction algorithms for all subsystems. This will allow the near detectors to continue contributing to important physics measurements during the T2K-II and Hyper-Kamiokande eras. Additionally, work to disentangle the degradation of the plastic scintillator and wavelength shifting fibres shows that the reduction in light yield can be attributed to the ageing of the plastic scintillator. The long component of the attenuation length of the wavelength shifting fibres was observed to degrade by 1.3鈥5.4% per year, while the short component of the attenuation length did not show any conclusive degradationWe thank the J-PARC staff for superb accelerator performance. We thank the CERN NA61/SHINE Collaboration for providing valuable particle production data. We acknowledge the support of MEXT, JSPS KAKENHI (JP16H06288, JP18K03682, JP18H03701, JP18H05537, JP19J01119, JP19J22440, JP19J22258, JP20H00162, JP20H00149, JP20J20304) and bilateral programs (JPJSBP120204806, JPJSBP120209601), Japan; NSERC, the NRC, and CFI, Canada; the CEA and CNRS/IN2P3, France; the DFG (RO 3625/2), Germany; the INFN, Italy; the Ministry of Education and Science( DIR/WK/2017/05) and the National Science Centre (UMO-2018/30/E/ST2/00441), Poland; the RSF19-12-00325, RSF22-12-00358 and the Ministry of Science and Higher Education (075-15-2020- 778), Russia; MICINN (SEV-2016-0588, PID2019-107564GB-I00, PGC2018-099388-BI00) and ERDF funds and CERCA program, Spain; the SNSF and SERI (200021_185012, 200020_188533, 20FL21_186178I), Switzerland; the STFC, U.K.; and the DOE, U.S.A. We also thank CERN for the UA1/NOMAD magnet, DESY for the HERA-B magnet mover system, NII for SINET5, the WestGrid and SciNet consortia in Compute Canada, and GridPP in the United Kingdom. In addition, the participation of individual researchers and institutions has been further supported by funds from the ERC (FP7), 鈥渓a Caixa鈥 Foundation (ID 100010434, fellowship code LCF/BQ/IN17/11620050), the European Union鈥檚 Horizon 2020 Research and Innovation Programme under the Marie Sklodowska-Curie grant agreement numbers 713673 and 754496, and H2020 grant numbers RISE-GA822070-JENNIFER2 2020 and RISE-GA872549-SK2HK; the JSPS, Japan; the Royal Society, U.K.; French ANR grant number ANR-19-CE31-0001; and the DOE Early Career programme, U.S.A

Supernova model discrimination with hyper-kamiokande

Astrophysical Journal IOP Publishing 916:1 (2021) 15

Authors:

K Abe, P Adrich, H Aihara, R Akutsu, I Alekseev, A Ali, F Ameli, I Anghel, Lhv Anthony, M Antonova, A Araya, Y Asaoka, Y Ashida, V Aushev, F Ballester, I Bandac, M Barbi, Gj Barker, G Barr, M Batkiewicz-Kwasniak, M Bellato, V Berardi, M Bergevin, L Bernard, E Bernardini, L Berns, S Bhadra, J Bian, A Blanchet, Fdm Blaszczyk, A Blondel, A Boiano, S Bolognesi, L Bonavera, N Booth, S Borjabad, T Boschi, D Bose, C Bozza, A Bravar, D Bravo-Berguno, C Bronner, L Brown, A Bubak, A Buchowicz, M Buizza Avanzini, Fs Cafagna, Nf Calabria, Jm Calvo-Mozota, S Cao

Abstract:

Core-collapse supernovae are among the most magnificent events in the observable universe. They produce many of the chemical elements necessary for life to exist and their remnants - neutron stars and black holes - are interesting astrophysical objects in their own right. However, despite millennia of observations and almost a century of astrophysical study, the explosion mechanism of core-collapse supernovae is not yet well understood. Hyper-Kamiokande is a next-generation neutrino detector that will be able to observe the neutrino flux from the next galactic core-collapse supernova in unprecedented detail. We focus on the first 500 ms of the neutrino burst, corresponding to the accretion phase, and use a newly-developed, high-precision supernova event generator to simulate Hyper-Kamiokande's response to five different supernova models. We show that Hyper-Kamiokande will be able to distinguish between these models with high accuracy for a supernova at a distance of up to 100 kpc. Once the next galactic supernova happens, this ability will be a powerful tool for guiding simulations toward a precise reproduction of the explosion mechanism observed in nature.

First T2K measurement of transverse kinematic imbalance in the muon-neutrino charged-current single-蟺+ production channel containing at least one proton

Physical Review D American Physical Society (APS) 103:11 (2021) 112009

Authors:

K Abe, N Akhlaq, R Akutsu, A Ali, C Alt, C Andreopoulos, M Antonova, S Aoki, T Arihara, Y Asada, Y Ashida, ET Atkin, Y Awataguchi, GJ Barker, G Barr, D Barrow, M Batkiewicz-Kwasniak, A Beloshapkin, F Bench, V Berardi, L Berns, S Bhadra, A Blanchet, A Blondel, S Bolognesi, T Bonus, B Bourguille, SB Boyd, A Bravar, D Bravo Bergu帽o, C Bronner, S Bron, A Bubak, M Buizza Avanzini, S Cao, SL Cartwright, MG Catanesi, A Cervera, J Chakrani, D Cherdack, G Christodoulou, M Cicerchia, J Coleman, G Collazuol, L Cook, D Coplowe, A Cudd, G De Rosa, T Dealtry, CC Delogu, SR Dennis, C Densham, A Dergacheva, F Di Lodovico, S Dolan, D Douqa, TA Doyle, J Dumarchez, P Dunne, A Eguchi, L Eklund, S Emery-Schrenk, A Ereditato, AJ Finch, G Fiorillo, C Francois, M Friend, Y Fujii, R Fukuda, Y Fukuda, K Fusshoeller, C Giganti, M Gonin, EAG Goodman, A Gorin, M Grassi, M Guigue, DR Hadley, P Hamacher-Baumann, DA Harris, M Hartz, T Hasegawa, S Hassani, NC Hastings, Y Hayato, A Hiramoto, M Hogan, J Holeczek, NT Hong Van, T Honjo, F Iacob, AK Ichikawa, M Ikeda, T Ishida, M Ishitsuka, K Iwamoto, A Izmaylov, N Izumi, M Jakkapu, B Jamieson, SJ Jenkins, C Jes煤s-Valls, JJ Jiang, P Jonsson, CK Jung, PB Jurj, M Kabirnezhad, H Kakuno, J Kameda, SP Kasetti, Y Kataoka, Y Katayama, T Katori, E Kearns, M Khabibullin, A Khotjantsev, T Kikawa, H Kikutani, S King, J Kisiel, T Kobata, T Kobayashi, L Koch, A Konaka, LL Kormos, Y Koshio, A Kostin, K Kowalik, Y Kudenko, S Kuribayashi, R Kurjata, T Kutter, M Kuze, L Labarga, J Lagoda, M Lamoureux, D Last, M Laveder, M Lawe, S-K Lin, RP Litchfield, SL Liu, A Longhin, L Ludovici, X Lu, T Lux, LN Machado, L Magaletti, K Mahn, M Malek, S Manly, L Maret, AD Marino, L Marti-Magro, T Maruyama, T Matsubara, K Matsushita, C Mauger, A Maurel, K Mavrokoridis, E Mazzucato, N McCauley, J McElwee, KS McFarland, C McGrew, A Mefodiev, GD Megias, L Mellet, M Mezzetto, A Minamino, O Mineev, S Mine, M Miura, L Molina Bueno, S Moriyama, Th A Mueller, D Munford, L Munteanu, Y Nagai, T Nakadaira, M Nakahata, Y Nakajima, A Nakamura, H Nakamura, K Nakamura, Y Nakano, S Nakayama, T Nakaya, K Nakayoshi, CER Naseby, TV Ngoc, VQ Nguyen, K Niewczas, Y Nishimura, K Nishizaki, E Noah, TS Nonnenmacher, F Nova, J Nowak, JC Nugent, HM O鈥橩eeffe, L O鈥橲ullivan, T Odagawa, T Ogawa, R Okada, K Okumura, T Okusawa, RA Owen, Y Oyama, V Palladino, V Paolone, M Pari, WC Parker, J Parlone, S Parsa, J Pasternak, M Pavin, D Payne, GC Penn, D Pershey, L Pickering, C Pidcott, G Pintaudi, C Pistillo, B Popov, K Porwit, M Posiadala-Zezula, B Quilain, T Radermacher, E Radicioni, B Radics, PN Ratoff, M Reh, C Riccio, E Rondio, S Roth, A Rubbia, AC Ruggeri, CA Ruggles, A Rychter, LSM Lakshmi, K Sakashita, F S谩nchez, G Santucci, CM Schloesser, K Scholberg, M Scott, Y Seiya, T Sekiguchi, H Sekiya, D Sgalaberna, A Shaikhiev, A Shaykina, M Shiozawa, W Shorrock, A Shvartsman, K Skwarczynski, M Smy, JT Sobczyk, H Sobel, FJP Soler, Y Sonoda, R Spina, S Suvorov, A Suzuki, SY Suzuki, Y Suzuki, AA Sztuc, M Tada, M Tajima, A Takeda, Y Takeuchi, HK Tanaka, Y Tanihara, M Tani, N Teshima, N Thamm, LF Thompson, W Toki, C Touramanis, T Towstego, KM Tsui, T Tsukamoto, M Tzanov, Y Uchida, M Vagins, S Valder, D Vargas, G Vasseur, C Vilela, WGS Vinning, T Vladisavljevic, T Wachala, J Walker, JG Walsh, Y Wang, L Wan, D Wark, MO Wascko, A Weber, R Wendell, MJ Wilking, C Wilkinson, JR Wilson, K Wood, C Wret, J Xia, Y-H Xu, K Yamamoto, C Yanagisawa, G Yang, T Yano, K Yasutome, N Yershov, M Yokoyama, T Yoshida, Y Yoshimoto, M Yu, R Zaki, A Zalewska, J Zalipska, K Zaremba, G Zarnecki, M Ziembicki, M Zito, S Zsoldos

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