Perturbing neutrino oscillations around the solar resonance

Author:

Martinez-Soler Ivan123,Minakata Hisakazu45

Affiliation:

1. Theoretical Physics Department, Fermi National Accelerator Laboratory, PO Box 500, Batavia, IL 60510, USA

2. Department of Physics and Astronomy, Northwestern University, Evanston, IL 60208, USA

3. Colegio de Física Fundamentale Interdisciplinaria de las Américas (COFI), 254 Norzagaray Street, San Juan, Puerto Rico 00901

4. Center for Neutrino Physics, Department of Physics, Virginia Tech, Blacksburg, VA 24061, USA

5. Research Center for Cosmic Neutrinos, Institute for Cosmic Ray Research, University of Tokyo, Kashiwa, Chiba 277-8582, Japan

Abstract

Abstract Atmospheric neutrinos at low energies, $E \lesssim 500$ MeV, are known to be a rich source of information on lepton mixing parameters. We formulate a simple perturbative framework to elucidate the characteristic features of neutrino oscillation at around the solar-scale enhancement due to the matter effect. The clearest message that we could extract from our perturbation theory is that CP violation in the appearance oscillation probability is large, a factor of $\sim 10$ times larger than CP violation at around the atmospheric-scale oscillation maximum. The underlying mechanism for this is that one of the suppression factors on the CP phase-dependent terms due to the smallness of $\Delta m^2_{21} / \Delta m^2_{31}$ is dynamically lifted by the solar-scale enhancement. Our framework has a unique feature as a perturbation theory in which a large $\Delta m^2_{31}$ term outside the key 1-2 sector for the solar-scale resonance does not yield sizable corrections. On the contrary, the larger the $\Delta m^2_{31}$, the smaller the higher-order corrections.

Funder

Colegio de Física Fundamental e Interdisciplinaria de las Américas

Publisher

Oxford University Press (OUP)

Subject

General Physics and Astronomy

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