Publication:
Inflation and Late Time Acceleration Designed by Stueckelberg Massive Photon

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Springer Science and Business Media LLC

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We present a mini review of the Stueckelberg mechanism, which was proposed to make the abelian gauge theories massive as an alternative to Higgs mechanism, within the framework of Minkowski as well as curved spacetimes. The higher the scale the tighter the bounds on the photon mass, which might be gained via the Stueckelberg mechanism, may be signalling that even an extremely small mass of the photon which cannot be measured directly could have far reaching effects in cosmology. We present a cosmological model where Stueckelberg fields, which consist of both scalar and vector fields, are non-minimally coupled to gravity and the universe could go through a decelerating expansion phase sandwiched by two different accelerated expansion phases. We discuss also the possible anisotropic extensions of the model.
Invited review; matches the version to appear in Foundations of Physics; 25 pages, 1 figure

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Foundations of Physics

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0015-9018

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OPEN

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Quantum optics, Cosmology and Nongalactic Astrophysics (astro-ph.CO), massive photon, FOS: Physical sciences, late time acceleration, Exact solutions to problems in general relativity and gravitational theory, General Relativity and Quantum Cosmology (gr-qc), Relativistic gravitational theories other than Einstein's, including asymmetric field theories, General Relativity and Quantum Cosmology, Astrophysical cosmology, Stueckelberg mechanism, inflation, dark energy, Higgs mechanism, Space-time singularities, cosmic censorship, etc., modified gravity, Relativistic cosmology, Astrophysics - Cosmology and Nongalactic Astrophysics

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