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Phys. Rev. D 65, 064021 (2002) [13 pages]

Origin of spontaneous symmetry breaking in theories with large extra dimensions

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G. Dvali*
Department of Physics, New York University, New York, New York 10003

S. Randjbar-Daemi
International Centre for Theoretical Physics, Trieste, Italy

R. Tabbash
SISSA-ISAS, Via Beirut 4, I-34014 Trieste, Italy

Received 18 March 2001; published 27 February 2002

We suggest that the electroweak Higgs particles can be identified with extra-dimensional components of the gauge fields, which after compactification on a certain topologically nontrivial background become tachyonic and condense. If the tachyonic mass is a tree level effect, the natural scale of the gauge symmetry breaking is set by the inverse radius of the internal space, which, in the case of electroweak symmetry, must be around ∼1/TeV. We discuss the possibility of a vanishing tree level mass for the Higgs boson. In such a scenario the tachyonic mass can be induced by quantum loops and can be naturally smaller than the compactification scale. We give an example in which this possibility can be realized. Starting from an Einstein-Yang-Mills theory coupled to fermions in ten dimensions, we are able to reproduce the spectrum of the standard model, such as chiral fermions and Higgs type scalars, in four dimensions upon compactifying on CP1×CP2. The existence of a monopole solution on CP1 and a self-dual U(1) instanton on CP2 is essential in obtaining chiral fermions as well as tachyonic or massless scalars in four dimensions. We give a simple rule that helps us to identify the presence of tachyons on the monopole background on S2.

© 2002 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevD.65.064021
DOI:
10.1103/PhysRevD.65.064021
PACS:
04.50.+h, 12.60.Fr

*Email address: gd23@NYU.EDU

Email address: daemi@ictp.trieste.it

Email address: rula@sissa.it