Graph explorer

Natural Heavy Supersymmetry

We study how, as a result of the scanning of supersymmetry breaking during the cosmological evolution, a relaxation mechanism can naturally determine a hierarchy between the weak scale and the masses of supersymmetric particles. Supersymmetry breaking is determined by QCD instanton effects, in an extremely minimal setup in which a single field drives the relaxation and breaks supersymmetry. Since gauginos are lighter than the other supersymmetric particles by a one-loop factor, the theory is a realisation of Split Supersymmetry free from the naturalness problem.

5 nodes4 linksoverview mapNatural Heavy Supersymmetry
5 nodes4 links
Natural Heavy Supersymmetry5 visible / 5 total nodes / 7 links
Co-authorshipCo-authorshipCo-authorshipAuthorshipAuthorshipAuthorshipTopic signalWNatural Heavy Supersymmetrypreprint / 2015ABrian BatellResearcherAGian F. GiudiceResearcherAMatthew McCulloughResearcherThep-ph13193 works
PaperSignal 104 links

Natural Heavy Supersymmetry

preprint / 2015

Open