arXiv · hep-ph/9310221
Strongly interacting $W$ bosons and supersymmetry
Abstract
We present arguments in favor of the idea that supersymmetric sigma models with compact symmetric Kähler spaces as target manifolds have a second-order phase transition in four dimensions. When applied to electroweak symmetry breaking, these models then do not require a light Higgs boson or techni-resonances but predict fermionic superpartners of longitudinal W's and Z with masses at or below TeV scale. Presence of the phase transition leads to a fractional-power energy dependence of fixed-angle scattering amplitude of longitudinal W's and Z's at high energies.
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S. Yu. Khlebnikov. 1993-10-04. Strongly interacting $W$ bosons and supersymmetry. https://doi.org/10.1103/physrevd.49.5613
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