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In this project we study the phenomenology of models where the Higgs is a bound state of a strongly interacting dynamics at the TeV scale and we assess the LHC potential to discover new heavy colored states. The existence of such new heavy resonances is a prediction of composite Higgs models as well of theories with a warped extra-dimension, some of the most compelling scenarios for the physics beyond the Standard Model which are going to be tested at the Large Hadron Collider. In the first part we analyze the bounds on the spectrum of Composite Higgs Models that come from flavor observables.…mehr

Produktbeschreibung
In this project we study the phenomenology of models where the Higgs is a bound state of a strongly interacting dynamics at the TeV scale and we assess the LHC potential to discover new heavy colored states. The existence of such new heavy resonances is a prediction of composite Higgs models as well of theories with a warped extra-dimension, some of the most compelling scenarios for the physics beyond the Standard Model which are going to be tested at the Large Hadron Collider. In the first part we analyze the bounds on the spectrum of Composite Higgs Models that come from flavor observables. In the second part we propose a novel strategy to discover a heavy gluon and heavy fermions at the LHC.
Autorenporträt
Dr. Natascia Vignaroli obtained her Ph.D. in Physics from the University of Rome "La Sapienza" in 2012.She works on the theory and phenomenology of particle physics at high energy, with particular focus on new physics theories beyond the Standard Model and in their predictions for collider searches.