
prof. dr hab. Jan Sobczyk
profesor
Zakład Fizyki Neutrin
Kierownik
Zakład Fizyki Neutrin
przewodniczący rady dyscypliny
Wydział Fizyki i Astronomii
pl. M. Borna 9
jan.sobczyk@uwr.edu.pl
tel. +48 71 375 94 39, +48 71 322 23 63, +48 71 375 94 08
Zainteresowania
- neutrino astronomy
- t2k
- neutrino interactions
- neutrino oscillation
- model
- nuclear
- neutrino interaction
- nucleus
- scattering
- general physics
Dyscyplina naukowa
- nauki fizyczne
Najnowsze publikacje
- Search for Electron Antineutrino Appearance in a Long-Baseline Muon Antineutrino Beam
- Constraint on the matter–antimatter symmetry-violating phase in neutrino oscillations
- Simultaneous measurement of the muon neutrino charged-current cross section on oxygen and carbon without pions in the final state at T2K
- Search for heavy neutrinos with the T2K near detector ND280
- Identification of nuclear effects in neutrino and antineutrino interactions on nuclei using generalized final-state correlations
- Comparisons and challenges of modern neutrino-scattering experiments
- First measurement of muon neutrino charged-current interactions on hydrocarbon without pions in the final state using multiple detectors with correlated energy spectra at T2K
- Supernova Model Discrimination with Hyper-Kamiokande
- Study of final-state interactions of protons in neutrino-nucleus scattering with INCL and NuWro cascade models
- Nuclear transparency in Monte Carlo neutrino event generators
- Second class currents, axial mass, and nuclear effects in hyperon production
- Probing nuclear effects with neutrino-induced charged-current neutral pion production
- JLab spectral functions of argon in nuwro and their implications for MicroBooNE
- Improved constraints on neutrino mixing from the T2K experiment with 3.13×1021 protons on target
- Search for light sterile neutrinos with the T2K far detector Super-Kamiokande at a baseline of 295 km
- First measurement of the charged current ν¯μ double differential cross section on a water target without pions in the final state
- Measurements of neutrino oscillation parameters from the T2K experiment using 3.6 × 10 21 protons on target
- First T2K measurement of transverse kinematic imbalance in the muon-neutrino charged-current single- π+ production channel containing at least one proton
- Updated T2K measurements of muon neutrino and antineutrino disappearance using 3.6×1021 protons on target
- Angular distributions in Monte Carlo event generation of weak single-pion production