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arXiv:1210.7407·v1·High Energy Physics — Phenomenology

Impact of a light stabilized radion in supernovae cooling

Prasanta Kumar Das🇮🇳 · J. R. Selvaganapathy🇮🇳 · Chandradew Sharma🇮🇳 · Tarun Kumar Jha🇮🇳 · V. Sunil Kumar🇮🇳

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Abstract

In the Randall-Sundrum model where the Standard Model fields are confined to the TeV brane located at the orbifold point and the gravity peaks at the Planck brane located at , the stabilized modulus (radion) field is required to stabilize the size of the fifth spatial dimension. It can be produced copiously inside the supernova core due to nucleon-nucleon bremstrahlung, electron-positron and plasmon-plasmon annihilations, which then subsequently decays to neutrino-antineutrino pair and take away the energy released in SN1987A explosion. Assuming that the supernovae cooling rate , we find the lower bound on the radion vev TeV, 2.2 TeV and 0.9 TeV corresponding to the radion mass GeV, 20 GeV and 50 GeV, respectively.

Comments: 18 pages, 8 eps figures. arXiv admin note: substantial text overlap with arXiv:0801.1269; and with arXiv:hep-ph/0201099 by other authors

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