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Published November 21, 2008 | Submitted
Journal Article Open

Off-shell M5 brane, perturbed Seiberg–Witten theory, and metastable vacua

Abstract

We demonstrate that, in an appropriate limit, the off-shell M5-brane worldvolume action effectively captures the scalar potential of Seiberg-Witten theory perturbed by a small superpotential and, consequently, any nonsupersymmetric vacua that it describes. This happens in a similar manner to the emergence from M5's of the scalar potential describing certain type IIB flux configurations [1]. We then construct exact nonholomorphic M5 configurations in the special case of SU(2) Seiberg-Witten theory deformed by a degree six superpotential which correspond to the recently discovered metastable vacua of Ooguri, Ookouchi, Park [2], and Pastras [3]. These solutions take the approximate form of a holomorphic Seiberg-Witten geometry with harmonic embedding along a transverse direction and allow us to obtain geometric intuition for local stability of the gauge theory vacua. As usual, dynamical processes in the gauge theory, such as the decay of nonsupersymmetric vacua, take on a different character in the M5 description which, due to issues of boundary conditions, typically involves runaway behavior in MQCD.

Additional Information

© 2008 Elsevier. Received 19 February 2008; revised 5 May 2008; accepted 8 May 2008; available online 14 May 2008. We would like to thank J. de Boer, R. Dijkgraaf, L. Mazzucato, H. Ooguri, C. S. Park, K. Skenderis, M. Taylor and especially Y. Ookouchi for valuable discussions. We would also like to thank Y. Ookouchi for collaboration at the early stage of this work. The work of J.M. was supported in part by Department of Energy grant DE-FG03-92ER40701 and by a John A McCone postdoctoral fellowship. The work of K.P. was supported by Foundation of Fundamental Research on Matter (FOM). The work of M.S. was supported by an NWO Spinoza grant. This article is registered under preprint number 0801.2154

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