ID: hep-th/0502233

Recent Results on N=2,4 Supersymmetry with Lorentz Symmetry Violating

February 26, 2005

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D=10, N=IIB Supergravity: Lorentz-invariant actions and duality

June 17, 1998

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Gianguido Dall'Agata, Kurt Lechner, Mario Tonin
High Energy Physics - Theory

We present a manifestly Lorentz invariant and supersymmetric component field action for $D = 10$, type $IIB$ supergravity, using a newly developed method for the construction of actions with chiral bosons, which implies only a single scalar non propagating auxiliary field. With the same method we construct also an action in which the complex two-form gauge potential and its Hodge-dual, a complex six-form gauge potential, appear in a symmetric way in compatibility with supersy...

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New bi-harmonic superspace formulation of $4D, \mathcal{N}=4$ SYM theory

December 17, 2020

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I. L. Buchbinder, E. A. Ivanov, V. A. Ivanovskiy
High Energy Physics - Theory

We develop a novel bi-harmonic $\mathcal{N}=4$ superspace formulation of the $\mathcal{N}=4$ supersymmetric Yang-Mills theory (SYM) in four dimensions. In this approach, the $\mathcal{N}=4$ SYM superfield constraints are solved in terms of on-shell $\mathcal {N}=2$ harmonic superfields. Such an approach provides a convenient tool of constructing the manifestly $\mathcal{N}=4$ supersymmetric invariants and further rewriting them in $\mathcal{N}= 2$ harmonic superspace. In part...

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Superspace Higher Derivative Terms in Two Dimensions

December 13, 2016

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Fotis Farakos, Pavel Kočí, Unge Rikard von
High Energy Physics - Theory

We study $(2,2)$ and $(4,4)$ supersymmetric theories with superspace higher derivatives in two dimensions. A characteristic feature of these models is that they have several different vacua, some of which break supersymmetry. Depending on the vacuum, the equations of motion describe different propagating degrees of freedom. Various examples are presented which illustrate their generic properties. As a by-product we see that these new vacua give a dynamical way of generating n...

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Exact results on N=2 supersymmetric gauge theories

December 22, 2014

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Jörg Teschner
High Energy Physics - Theory

This is the introduction to the collection of review articles "Exact results on N=2 supersymmetric gauge theories". The first three sections are intended to give a general overview over the physical motivations behind this direction of research, and some of the developments that initiated this project. These sections are written for a broad audience of readers with interest in quantum field theory, assuming only very basic knowledge of supersymmetric gauge theories and string...

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Non-perturbative aspects of (supersymmetric) gauge theories

February 22, 1997

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Frank Ferrari
High Energy Physics - Phenom...
High Energy Physics - Theory

At an elementary level, we present some non-perturbative aspects of non-abelian gauge theories in four dimensional space-time. Some rigorous results have been obtained in the framework of supersymmetric theories, and a very rich physics related to the strong-coupling dynamics of gauge fields has been discovered. Some of the new phenomena which appeared may play a significant role in future phenomenological models. However, quantitative computations in non-supersymmetric theor...

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Maximally Supersymmetric Yang-Mills Theory. The Story of N = 4 Yang-Mills Theory

November 10, 2015

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Lars Brink
High Energy Physics - Theory

This is a personally colored account of the history behind N=4 Yang-Mills Theory.

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Lorentz harmonics and superfield action. D=10, N=1 superstring

October 6, 2000

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Igor Bandos, Tatyana Bandos
High Energy Physics - Theory

We propose a new version of the superfield action for a closed D=10, N=1 superstring where the Lorentz harmonics are used as auxiliary superfields. The incorporation of Lorentz harmonics into the superfield action makes possible to obtain superfield constraints of the induced worldsheet supergravity as equations of motion. Moreover, it becomes evident that a so-called 'Wess-Zumino part' of the superfield action is basically a Lagrangian form of the generalized action principl...

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Lorentz Symmetry Breaking in $\mathcal{N} =2$ Superspace

August 19, 2015

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Mir Faizal, Prince A. Ganai
High Energy Physics - Theory

In this paper, we will study the deformation of a three dimensional theory with $\mathcal{N} =2$ supersymmetry. This theory will be deformed by the presence of a constant vector field. This deformation will break the Lorentz symmetry. So, we will analyse this theory using $\mathcal{N} =2$ aether superspace. The $\mathcal{N} =2$ aether superspace will be obtained from a deformation of the usual $\mathcal{N} =2$ superspace. This will be done by deforming the generators of the t...

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The Complete Form of N=2 Supergravity and its Place in the General Framework of D=4 N--Extended Supergravities

November 22, 1996

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Pietro Universitá di Torino Fré
High Energy Physics - Theory

Relying on the geometrical set up of Special K\"ahler Geometry and Quaternionic Geometry, which I discussed at length in my Lectures at the 1995 edition of this Spring School, I present here the recently obtained fully general form of N=2 supergravity with completely arbitrary couplings. This lagrangian has already been used in the literature to obtain various results: notably the partial breaking of supersymmetry and various extremal black--hole solutions. My emphasis, howev...

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N=1 superfield description of vector-tensor couplings in six dimensions

January 30, 2015

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Hiroyuki Abe, Yutaka Sakamura, Yusuke Yamada
High Energy Physics - Theory
High Energy Physics - Phenom...

We express supersymmetric couplings among the vector and the tensor multiplets in six dimensions (6D) in terms of N=1 superfields. The superfield description is derived from the invariant action in the projective superspace. The obtained expression is consistent with the known superfield actions of 6D supersymmetric gauge theory and 5D Chern-Simons theory after the dimensional reduction. Our result provides a crutial clue to the N=1 superfield description of 6D supergravity.

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