General Gauge and Anomaly Mediated Supersymmetry Breaking in Grand Unified Theories with Vector-Like Particles
Tianjun Li, Dimitri V. Nanopoulos

TL;DR
This paper explores various grand unified theories with vector-like particles, analyzing their gaugino mass relations under different supersymmetry breaking mechanisms to distinguish among theoretical models and probe messenger fields.
Contribution
It introduces a unified framework for studying gaugino mass relations in GUTs with vector-like particles across multiple supersymmetry breaking scenarios, including new indices for deflected AMSB.
Findings
Gaugino mass relations are valid from GUT to electroweak scale at one loop.
New indices for gaugino mass relations are defined in deflected AMSB.
These relations can help identify messenger fields and distinguish GUT models.
Abstract
In Grand Unified Theories (GUTs) from orbifold and various string constructions the generic vector-like particles do not need to form complete SU(5) or SO(10) representations. To realize them concretely, we present orbifold SU(5) models, orbifold SO(10) models where the gauge symmetry can be broken down to flipped SU(5) X U(1)_X or Pati-Salam SU(4)_C X SU(2)_L X SU(2)_R gauge symmetries, and F-theory SU(5) models. Interestingly, these vector-like particles can be at the TeV-scale so that the lightest CP-even Higgs boson mass can be lifted, or play the messenger fields in the Gauge Mediated Supersymmetry Breaking (GMSB). Considering GMSB, ultraviolet insensitive Anomaly Mediated Supersymmetry Breaking (AMSB), and the deflected AMSB, we study the general gaugino mass relations and their indices, which are valid from the GUT scale to the electroweak scale at one loop, in the SU(5) models,…
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