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      CP Violation vs. Matter Effect in Long-Baseline Neutrino Oscillation Experiments

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          Abstract

          We investigate, within the framework of three generations of neutrinos, the effects of CP violation in long-baseline neutrino oscillation experiments. We aim at illuminating the global feature of the interplay between genuine effect due to the CP violating phase and a fake one due to the earth matter effect. To this goal, we develop a formalism based on the adiabatic approximation and perturbative treatment of the matter effect which allows us to obtain approximate analytic expressions of the oscillation probabilities. We present an order-of-magnitude estimation and a detailed numerical computation of the absolute and the relative magnitudes of the CP violations under the mass hierarchy suggested by the atmospheric neutrino anomaly and the cosmological dark matter. We find that the genuine CP violating effect is at most \sim 1%, and the matter effect dominates over the intrinsic CP violation only in a region of parameters where the oscillation probability of \(\nu_\mu\to\nu_e\) is large.

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          Most cited references36

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          CP-Violation in the Renormalizable Theory of Weak Interaction

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            Unitary Symmetry and Leptonic Decays

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              Commutator of the Quark Mass Matrices in the Standard Electroweak Model and a Measure of MaximalCPNonconservation

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                Author and article information

                Journal
                01 May 1997
                1997-12-19
                Article
                10.1103/PhysRevD.57.4403
                hep-ph/9705208
                aa579ff0-f997-42b8-b6c2-472c6913880d
                History
                Custom metadata
                TMUP-HEL-9704, FTUV/97-21, IFIC/97-21
                Phys.Rev. D57 (1998) 4403-4417
                Latex file, 39 pages including 15 ps figures, uses psfig.sty, version to appear in Phys. Rev. D., some comments and references are added
                hep-ph astro-ph

                General astrophysics,High energy & Particle physics
                General astrophysics, High energy & Particle physics

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