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JOURNALS // Trudy Matematicheskogo Instituta imeni V.A. Steklova // Archive

Trudy Mat. Inst. Steklova, 2020 Volume 309, Pages 66–88 (Mi tm4084)

Hidden Supersymmetry as a Key to Constructing Low-Energy Superfield Effective Actions

I. L. Buchbindera, E. A. Ivanovb

a Faculty of Physics and Mathematics, Tomsk State Pedagogical University, Komsomol'skii pr. 75, Tomsk, 634041 Russia
b Bogoliubov Laboratory of Theoretical Physics, Joint Institute for Nuclear Research, ul. Joliot-Curie 6, Dubna, Moscow oblast, 141980 Russia

Abstract: In this review paper, we outline and exemplify the general method of constructing the superfield low-energy quantum effective action of supersymmetric Yang–Mills (SYM) theories with extended supersymmetry in the Coulomb phase, grounded upon the requirement of invariance under the non-manifest (hidden) part of the underlying supersymmetry. In this way we restore the $\mathcal N=4$ supersymmetric effective actions in $4D$, $\mathcal N=4$ SYM, $\mathcal N=2$ supersymmetric effective actions in $5D$, $\mathcal N=2$ SYM and $\mathcal N=(1,1)$ supersymmetric effective actions in $6D$, $\mathcal N=(1,1)$ SYM theories. The manifest off-shell fractions of the full supersymmetry are, respectively, $4D$, $\mathcal N=2$, $5D$, $\mathcal N=1$ and $6D$, $\mathcal N=(1,0)$ supersymmetries. In all cases the effective actions depend on the corresponding covariant superfield SYM strengths and the hypermultiplet superfields. The whole construction essentially exploits a power of the harmonic superspace formalism.

UDC: 530.13+530.21+530.22+530.24

Received: October 14, 2019
Revised: November 11, 2019
Accepted: February 17, 2020

DOI: 10.4213/tm4084


 English version:
Proceedings of the Steklov Institute of Mathematics, 2020, 309, 57–77

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© Steklov Math. Inst. of RAS, 2024