English

Quantum Deconstruction of 5D SQCD

High Energy Physics - Theory 2010-10-27 v1

Abstract

We deconstruct the fifth dimension of 5D SCQD with general numbers of colors and flavors and general 5D Chern-Simons level; the latter is adjusted by adding extra quarks to the 4D quiver. We use deconstruction as a non-stringy UV completion of the quantum 5D theory; to prove its usefulness, we compute quantum corrections to the SQCD_5 prepotential. We also explore the moduli/parameter space of the deconstructed SQCD_5 and show that for |K_CS| < N_F/2 it continues to negative values of 1/(g_5)^2. In many cases there are flop transitions connecting SQCD_5 to exotic 5D theories such as E0, and we present several examples of such transitions. We compare deconstruction to brane-web engineering of the same SQCD_5 and show that the phase diagram is the same in both cases; indeed, the two UV completions are in the same universality class, although they are not dual to each other. Hence, the phase structure of an SQCD_5 (and presumably any other 5D gauge theory) is inherently five-dimensional and does not depends on a UV completion.

Keywords

Cite

@article{arxiv.hep-th/0611085,
  title  = {Quantum Deconstruction of 5D SQCD},
  author = {Edoardo Di Napoli and Vadim S. Kaplunovsky},
  journal= {arXiv preprint arXiv:hep-th/0611085},
  year   = {2010}
}

Comments

LaTeX+PStricks, 108 pages, 41 colored figures. Please print in color

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