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arXiv:1407.3574·v3·High Energy Physics — Phenomenology

Dark matter in the gauge-Higgs unification

Shuichiro Funatsu🇯🇵 · Hisaki Hatanaka🇰🇷 · Yutaka Hosotani🇯🇵 · Yuta Orikasa🇰🇷 · Takuya Shimotani🇯🇵

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Abstract

In the gauge-Higgs unification the lightest, neutral component of -spinor fermions (dark fermions), which are relevant for having the observed unstable Higgs boson, becomes the dark matter of the universe. We show that the relic abundance of the dark matter determined by WMAP and Planck data is reproduced, below the bound placed by the direct detection experiment by LUX, by a model with one light and three heavier () dark fermions with the lightest one of a mass from 2.3TeV to 3.1TeV. The corresponding Aharonov-Bohm phase in the fifth dimension ranges from 0.097 to 0.074. The case of () dark fermions yields the relic abundance smaller (larger) than the observed limit.

Comments: 55 pages, 11 figures, sections 3, 4 updated

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