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High Energy Physics - Experiment

Title: Decoherence in Neutrino Oscillation at the ESSnuSB Experiment

Authors: ESSnuSB: J. Aguilar, M. Anastasopoulos, E. Baussan, A.K. Bhattacharyya, A. Bignami, M. Blennow, M. Bogomilov, B. Bolling, E. Bouquerel, F. Bramati, A. Branca, G. Brunetti, I. Bustinduy, C.J. Carlile, J. Cederkall, T.W. Choi, S. Choubey, P. Christiansen, M. Collins, E. Cristaldo Morales, P. Cupiał, H. Danared, D. Dancila, J. P. A. M. de André, M. Dracos, I. Efthymiopoulos, T. Ekelöf, M. Eshraqi, G. Fanourakis, A. Farricker, E. Fasoula, T. Fukuda, N. Gazis, Th. Geralis, M. Ghosh, A. Giarnetti, G. Gokbulut, A. Gupta, C. Hagner, L. Halić, V. T. Hariharan, M. Hooft, K. E. Iversen, N. Jachowicz, M. Jenssen, R. Johansson, E. Kasimi, A. Kayis Topaksu, B. Kildetof, B. Kliček, K. Kordas, A. Leisos, M. Lindroos, A. Longhin, C. Maiano, D. Majumdar, S. Marangoni, C. Marrelli, et al. (37 additional authors not shown)
Abstract: Neutrino oscillation experiments provide a unique window in exploring several new physics scenarios beyond the standard three flavour. One such scenario is quantum decoherence in neutrino oscillation which tends to destroy the interference pattern of neutrinos reaching the far detector from the source. In this work, we study the decoherence in neutrino oscillation in the context of the ESSnuSB experiment. We consider the energy-independent decoherence parameter and derive the analytical expressions for P$_{\mu e}$ and P$_{\mu \mu}$ probabilities in vacuum. We have computed the capability of ESSnuSB to put bounds on the decoherence parameters namely, $\Gamma_{21}$ and $\Gamma_{32}$ and found that the constraints on $\Gamma_{21}$ are competitive compared to the DUNE bounds and better than the current T2K and MINOS ones. We have also investigated the impact of decoherence on the ESSnuSB measurement of the Dirac CP phase $\delta_{\rm CP}$ and concluded that it remains robust in the presence of new physics.
Comments: 30 pages, 9 figures, 2 tables
Subjects: High Energy Physics - Experiment (hep-ex); High Energy Physics - Phenomenology (hep-ph)
Cite as: arXiv:2404.17559 [hep-ex]
  (or arXiv:2404.17559v1 [hep-ex] for this version)

Submission history

From: Aman Gupta [view email]
[v1] Fri, 26 Apr 2024 17:38:04 GMT (4130kb,D)

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