Vector Higgs portal dark matter and the invisible Higgs |
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Authors: | Oleg Lebedev Yann Mambrini |
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Affiliation: | a DESY Theory Group, Notkestrasse 85, D-22607 Hamburg, Germany b CERN, Theory Division, CH-1211 Geneva 23, Switzerland c Laboratoire de Physique Théorique Université Paris-Sud, F-91405 Orsay, France |
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Abstract: | The Higgs sector of the Standard Model offers a unique probe of the hidden sector. In this work, we explore the possibility of renormalizable Higgs couplings to the hidden sector vector fields which can constitute dark matter (DM). Abelian gauge sectors with minimal field content, necessary to render the gauge fields massive, have a natural Z2 parity. This symmetry ensures stability of the vector fields making them viable dark matter candidates, while evading the usual electroweak constraints. We illustrate this idea with the Stückelberg and Higgs mechanisms. Vector DM is consistent with the WMAP, XENON100, and LHC constraints, while it can affect significantly the invisible Higgs decay. Due to the enhanced branching ratio for the Higgs decay into the longitudinal components of the vector field, the vector Higgs portal provides an efficient way to hide the Higgs at the LHC. This could be the reason why the latest combined ATLAS/CMS data did not bring evidence for the existence of the Higgs boson. |
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