Birefringent light propagation on anisotropic cosmological backgrounds
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2017Metadata
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Asenjo, Felipe A.
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Birefringent light propagation on anisotropic cosmological backgrounds
Abstract
Exact electromagnetic wave solutions to Maxwell equations on anisotropic Bianchi I cosmological spacetime backgrounds are studied. The waves evolving on Bianchi I spacetimes exhibit birefringence (associated with linear polarization) and dispersion. The particular case of a vacuum-dominated anisotropic Universe, which reproduces a Friedmann-Robertson-Walker Universe (for late times)-while, for earlier times, it matches a Kasner Universe-is studied. The electromagnetic waves do not, in general, follow null geodesics. This produces a modification of the cosmological redshift, which is then dependent on light polarization, its dispersion, and its non-null geodesic behavior. New results presented here may help to tackle some issues related to the "horizon" problem.
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CONICyT-Chile
79130002
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Artículo de publicación ISI
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Physical Review D 96, 044021 (2017)
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