The Higgs condensate as a quantum liquid: A critical comparison with observations
Paolo Cea

TL;DR
This paper compares the triviality scenario of scalar quantum field theories with numerical simulations, proposing that the Higgs condensate behaves like a quantum liquid, predicting two Higgs bosons, and analyzing LHC data for experimental support.
Contribution
It introduces a novel physical picture of the Higgs condensate as a quantum liquid and predicts a heavy Higgs boson around 730 GeV, contrasting with traditional perturbative approaches.
Findings
Triviality scenario aligns well with lattice simulations.
Perturbative approach shows significant deviations from simulations.
LHC data hints at a heavy Higgs around 730 GeV, but evidence is inconclusive.
Abstract
The triviality of four-dimensional scalar quantum field theories poses challenging problems to the usually adopted perturbative implementation of the Higgs mechanism. In the first part of the paper we compare the triviality scenario and the renormalised two-loop perturbation theory to precise and extensive results from non-perturbative numerical simulations of the real scalar field theory on the lattice. The proposal of triviality and spontaneous symmetry breaking turns out to be in good agreement with numerical simulations, while the renormalised perturbative approach seems to suffer significant deviations from the numerical simulation results. In the second part of the paper we try to illustrate how the triviality of four-dimensional scalar field theory leads, nevertheless, to the spontaneous symmetry breaking in the scalar sector of the Standard Model. We show how triviality allows…
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Taxonomy
TopicsParticle physics theoretical and experimental studies · Cosmology and Gravitation Theories · Dark Matter and Cosmic Phenomena
