By Mgr.Adam Smetana
With this thesis the writer contributes to the advance of a non-mainstream yet long-standing method of electroweak symmetry breaking in line with an analogy with superconductivity. Electroweak symmetry breaking is thought to be because of dynamically generated lots of general fermions, i.e., of quarks and leptons, which in flip assumes a brand new dynamics among quarks and leptons. basically it's designed to generate fermion plenty and electroweak symmetry breaking is an automated consequence.
After the precis of the subject, the 1st major a part of the thesis addresses the query to whether the hundreds of identified quarks and leptons offer sufficiently powerful resources of electroweak symmetry breaking. it really is tested that neutrino plenty topic to the seesaw mechanism are quintessential components. the opposite components of the thesis are devoted to the presentation of 2 specific types: the 1st version is predicated at the new powerful Yukawa dynamics and serves as a platform for learning the facility to breed fermion lots. the second one, extra reasonable version introduces a taste gauge dynamics and its phenomenological outcomes are studied.
Even even though, some time past, this sort of versions has already been of a few curiosity, following the invention of the Standard-Model-like Higgs particle, it's regaining its relevance.
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Electroweak Symmetry Breaking: By Dynamically Generated Masses of Quarks and Leptons (Springer Theses) by Mgr.Adam Smetana