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On s-confining SUSY-QCD with Anomaly Mediation
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abstract
In this work, we present a comprehensive study of the phase diagram of supersymmetric QCD with $N_{f}=N_{c}+1$ flavors perturbed by Anomaly Mediated Supersymmetry Breaking (AMSB). We extend the previous analyses on s-confining ASQCD theories in three different directions. We show that the existence of the QCD-like vacuum is independent of the size of the SUSY breaking parameter. We further expand the analysis of these models by including two and three-loop contributions to investigate the robustness and limitations of the results. Finally, we include the leading effect of higher-order K\"ahler terms to investigate the stability of the phase diagram as we approach the confining energy scale. The analysis with higher order K\"ahler terms is also extended for $N_{c}=2$ for which AMSB alone gives inconclusive results.
Forward citations
Cited by 3 Pith papers
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Anomaly mediation in Seiberg-Witten theories
AMSB on SU(2) Seiberg-Witten theories matches the N=1 SW deformation only perturbatively; nonperturbative effects force different condensates and a vacuum shift across the strong-coupling scale without a phase transition.
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AMSB in Truly Confining Gauge Theories
Adding small AMSB to t-confining SUSY gauge theories moves the ground state to a superpotential branch and predicts discrete and flavor symmetry breaking such as Z6 to Z2 and Z16 x SU(2) to SO(2).
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To Break or Not to Break: A Review of a No-Go Theorem on Chiral Symmetry Breaking in QCD-like Theories
A review showing that if a QCD-like theory with enough massless flavors is fully color-screened in the infrared, then chiral symmetry must be spontaneously broken.
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