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The gaugino condensate from asymmetric four-torus with twists

High Energy Physics - Theory 2023-02-22 v3 High Energy Physics - Lattice High Energy Physics - Phenomenology

Abstract

We calculate the gaugino condensate in SU(2)SU(2) super Yang-Mills theory on an asymmetric four-torus T4\mathbb T^4 with 't Hooft's twisted boundary conditions. The T4\mathbb T^4 asymmetry is controlled by a dimensionless detuning parameter Δ\Delta, proportional to L3L4L1L2L_3 L_4 - L_1 L_2, with LiL_i denoting the T4\mathbb T^4 periods. We perform our calculations via a path integral on a T4\mathbb T^4. Its size is taken much smaller than the inverse strong scale Λ\Lambda and the theory is well inside the semi-classical weak-coupling regime. The instanton background, constructed for Δ1\Delta\ll 1 in arXiv:hep-th/0007113, has fractional topological charge Q=12Q=\frac{1}{2} and supports two gaugino zero modes, yielding a non-vanishing bilinear condensate, which we find to be Δ\Delta-independent. Further, the theory has a mixed discrete chiral/11-form center anomaly leading to double degeneracy of the energy eigenstates on any size torus with 't Hooft twists. In particular, there are two vacua, 0|0\rangle and 1|1\rangle, that are exchanged under chiral transformation. Using this information, the Δ\Delta-independence of the condensate, and assuming further that the semi-classical theory is continuously connected to the strongly-coupled large-T4\mathbb T^4 regime, we determine the numerical coefficient of the gaugino condensate: 0\mboxtrλλ0=1\mboxtrλλ1=32π2Λ3\langle 0| \mbox{tr}\lambda\lambda|0\rangle=|\langle 1| \mbox{tr}\lambda\lambda|1\rangle|=32\pi^2 \Lambda^3, a result equal to twice the known R4\mathbb R^4 value. We discuss possible loopholes in the continuity approach that may lead to this discrepancy.

Keywords

Cite

@article{arxiv.2210.13568,
  title  = {The gaugino condensate from asymmetric four-torus with twists},
  author = {Mohamed M. Anber and Erich Poppitz},
  journal= {arXiv preprint arXiv:2210.13568},
  year   = {2023}
}

Comments

30 pages+appendices; typos corrected, references added, matches published version