Bounds on universal extra dimensions

Thomas Appelquist, Hsin-Chia Cheng, and Bogdan A. Dobrescu
Phys. Rev. D 64, 035002 – Published 21 June 2001
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Abstract

We show that the bound from the electroweak data on the size of extra dimensions accessible to all the standard model fields is rather loose. These “universal” extra dimensions could have a compactification scale as low as 300 GeV for one extra dimension. This is because the Kaluza-Klein number is conserved and thus the contributions to the electroweak observables arise only from loops. The main constraint comes from weak-isospin violation effects. We also compute the contributions to the S parameter and the Zbb¯ vertex. The direct bound on the compactification scale is set by CDF and D0 in the few hundred GeV range, and run II of the Tevatron will either discover extra dimensions or else it could significantly raise the bound on the compactification scale. In the case of two universal extra dimensions, the current lower bound on the compactification scale depends logarithmically on the ultraviolet cutoff of the higher dimensional theory, but can be estimated to lie between 400 and 800 GeV. With three or more extra dimensions, the cutoff dependence may be too strong to allow an estimate.

  • Received 22 January 2001

DOI:https://doi.org/10.1103/PhysRevD.64.035002

©2001 American Physical Society

Authors & Affiliations

Thomas Appelquist*

  • Department of Physics, Yale University, New Haven, Connecticut 06511

Hsin-Chia Cheng

  • Enrico Fermi Institute, The University of Chicago, Chicago, Illinois 60637

Bogdan A. Dobrescu

  • Department of Physics, Yale University, New Haven, Connecticut 06511

  • *Email address: thomas.appelquist@yale.edu
  • Email address: hcheng@theory.uchicago.edu
  • Email address: bogdan.dobrescu@yale.edu

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Issue

Vol. 64, Iss. 3 — 1 August 2001

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