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Optical simulation of neutrino oscillations in binary waveguide arrays

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arxiv 1405.1290 v1 pith:F3OOWWKI submitted 2014-05-06 physics.optics astro-ph.HEastro-ph.SRhep-th

classification physics.opticsastro-ph.HEastro-ph.SRhep-th
keywords neutrinoarraysbinaryopticaloscillationswaveguideeffectsequations
verification ladder T0 review T1 audit T2 compute T3 formal
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We theoretically propose and investigate an optical analogue of neutrino oscillations in a pair of vertically displaced binary waveguide arrays with longitudinally modulated effective refractive index. Optical propagation is modelled through coupled-mode equations, which in the continuous limit lead to two coupled Dirac equations for fermionic particles with different mass states, i.e. neutrinos. We demonstrate that neutrino oscillations can be quenched by nonlinear effects, and we predict the existence of neutrino solitons. Incidentally, these phenomena are expected to play an important role in massive supernova stars. Our results pave the way for using binary waveguide arrays as a classical laboratory for predicting exotic effects in particle physics and astrophysics.

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