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A Guide to AMSB QCD

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arxiv 2212.03260 v1 pith:2SAOZT6F submitted 2022-12-06 hep-th hep-ph

A Guide to AMSB QCD

classification hep-th hep-ph
keywords breakingchiralminimasymmetryamsbbaryoniccaserunaways
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present a careful study of the chiral symmetry breaking minima and the baryonic directions in supersymmetric QCD ($SU(N_c)$ with $N_f$ flavors) perturbed by Anomaly Mediated Supersymmetry Breaking (AMSB). For the s-confining case of $N_f = N_c + 1$ and most of the free-magnetic phase ($N_f \leq 1.43 N_c$) we find that naive tree level baryonic runaways are stabilized by loop effects. Runaways are present, however, for the upper end of the free magnetic phase ($N_f \gtrsim 1.43 N_c$) and into conformal window, signaling the existence of incalculable minima at large field values of ${\cal O} (\Lambda)$. Nevertheless, the chiral symmetry breaking points are locally stable, and are expected to continuously connect to the vacua of QCD for large SUSY breaking. The case of $N_f = N_c$ requires particular care due to the inherently strongly coupled nature of the quantum modified moduli space. Due to the incalculability of critical K\"ahler potential terms, the stability of the chiral symmetry breaking point along baryonic directions cannot be determined for $N_f=N_c$. With the exception of this case, all theories to which AMSB can be applied ($N_f < 3 N_c$) possess stable chiral symmetry breaking minima, and all theories with $N_f \lesssim 1.43 N_c$ (aside from $N_f = N_f$) are protected from runaways to incalculable minima.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Anomaly mediation in Seiberg-Witten theories

    hep-th 2026-07 accept novelty 6.5

    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.

  2. A Phenomenological Model of Mesons for Charged Current Weak Decays

    hep-ph 2026-05 unverdicted novelty 6.0

    A symmetry-guided phenomenological model organizes leading current-current operators for charged-current decays of heavy-light mesons and reproduces heavy-quark scaling relations for decay constants and form factors.