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Teppei Katori03/06/2025, 09:50
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Teppei Katori03/06/2025, 10:00
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Joao Coelho03/06/2025, 10:30
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Amina Khatun03/06/2025, 11:30
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Dan Barrow03/06/2025, 12:00
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Yiwen Yang03/06/2025, 13:30
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Isabel Goos03/06/2025, 14:00
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Rory Ramsden03/06/2025, 14:30
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03/06/2025, 15:30
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Nahid Bhuiyan03/06/2025, 16:00
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Katharine Dixon03/06/2025, 16:20
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Yael Deniz03/06/2025, 16:40
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Rory Ramsden (King's College London)
With neutrino physics becoming more precise comes the opportunity to validate the unitary nature of the lepton mixing matrix which underpins it. While the assumption of unitarity for the 3x3 matrix is exploited in neutrino oscillation measurements, deviations of unitarity could hint at several neutrino mass generation models which are reliant on such. Efforts have been made to present global...
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Yael Deniz (University of Idaho)
Continued improvements in the treatment of oscillation parameter uncertainties, flux modeling, and detector response not only enhance precision in neutrino physics but also open the door to a breakthrough application of particle physics in Geophysics, a technique known as Neutrino Oscillation Tomography. This method probes Earth’s internal structure by leveraging changes in oscillation...
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Isabel GOOS (APC)
The measurement of the energies and directions of atmospheric neutrinos traversing the Earth, combined with particle identification, will first answer the question of whether the neutrino mass ordering is normal or inverted. In the longer term, as neutrino telescopes currently operating (IceCube), partially completed (KM3NeT/ORCA), or under construction (Hyper-Kamiokande, DUNE) accumulate...
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Yiwen Yang
The Bartol model of atmospheric neutrino fluxes has undergone several significant updates since the last published results in the mid 2000s.
Around 2022, there was significant work done on implementing a hadron production data tuning scheme for the Bartol model. The available hadron production datasets were able to achieve a good coverage of the kinematic phase space. The post-tuning flux...
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