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Related papers: BLG theory with generalized Jordan triple systems

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Three-dimensional conformal theories with six supersymmetries and SU(4) R-symmetry describing stacks of M2-branes are here proposed to be related to generalized Jordan triple systems. Writing the four-index structure constants in an…

High Energy Physics - Theory · Physics 2009-03-27 Bengt E. W. Nilsson , Jakob Palmkvist

In this paper we will analyse a system of multiple M2-branes in between two M5-branes. This will be analysed by studying Bagger-Lambert-Gustavsson (BLG) theory on a manifold with two boundaries. The original BLG theory will be modified to…

High Energy Physics - Theory · Physics 2015-06-15 Mir Faizal

We show that the Bagger-Lambert theory of multiple M2-branes fits into the general construction of maximally supersymmetric gauge theories using the embedding tensor technique. We apply the embedding tensor technique in order to…

High Energy Physics - Theory · Physics 2008-11-26 Eric A. Bergshoeff , Mees de Roo , Olaf Hohm

The purpose of this thesis is to explore the properties of multiple coincident M2- and M5-branes. We begin with a review of the BLG and ABJM models of multiple M2-branes and our focus will be on their formulation in terms of 3-algebras. We…

High Energy Physics - Theory · Physics 2012-11-30 Paul Richmond

In this article we give a concise review of recent progress in our understanding of the Lie 3-algebra and their application to the Bagger-Lambert-Gustavsson model describing multiple M2-branes in M theory.

High Energy Physics - Theory · Physics 2014-11-20 Pei-Ming Ho

One of the most important questions in the Bagger-Lambert-Gustavsson (BLG) theory of multiple M2-branes is the choice of the Lie 3-algebra. The Lie 3-algebra should be chosen such that the corresponding BLG model is unitary and admits fuzzy…

High Energy Physics - Theory · Physics 2011-02-15 Chong-Sun Chu

We make the observation that M-brane models defined in terms of 3-algebras can be interpreted as higher gauge theories involving Lie 2-groups. Such gauge theories arise in particular in the description of non-abelian gerbes. This…

High Energy Physics - Theory · Physics 2012-07-10 Sam Palmer , Christian Saemann

M2-branes couple to a 3-form potential, which suggests that their description involves a non-abelian 2-gerbe or, equivalently, a principal 3-bundle. We show that current M2-brane models fit this expectation: they can be reformulated as…

High Energy Physics - Theory · Physics 2014-09-04 Sam Palmer , Christian Saemann

In previous work we proposed a field theory model for multiple M2-branes based on an algebra with a totally antisymmetric triple product. In this paper we gauge a symmetry that arises from the algebra's triple product. We then construct a…

High Energy Physics - Theory · Physics 2008-11-26 Jonathan Bagger , Neil Lambert

We propose a generalization of the Bagger-Lambert-Gustavsson action as a candidate for the description of an arbitrary number of M2-branes. The action is formulated in terms of N=2 superfields in three dimensions and corresponds to an…

High Energy Physics - Theory · Physics 2008-11-26 Sergey Cherkis , Christian Saemann

The radial quantization of N=8 theory in three dimensions is considered i.e. we study the N=8 BLG theory on RxS^2. We present the explicit from of the Lagrangian and the corresponding supersymmetry transformations and supersymmetry algebra.…

High Energy Physics - Theory · Physics 2009-04-04 M. Ali-Akbari

Using the concept of 3-Lie bialgebra, which has recently been defined in arXiv:1604.04475, we construct Bagger-Lambert-Gustavson (BLG) model for M2-brane on Manin triple of a special 3-Lie bialgebra. Then by using the correspondence and…

High Energy Physics - Theory · Physics 2016-12-21 M. Aali-Javanangrouh , A. Rezaei-Aghdam

Concise summary of the recent progress in the search for the world-volume action for multiple M2 branes. After a recent discovery of simplified version of BLG action, which is based on the ordinary Lie-algebra structure, does not have…

High Energy Physics - Theory · Physics 2009-12-04 A. Morozov

We describe the ternary and the generalized superderivations of finite-dimensional semisimple Jordan superalgebras over an algebraically closed field of characteristic zero and of finite-dimensional simple Jordan superalgebras with…

Rings and Algebras · Mathematics 2013-09-30 Alexey Shestakov

Motivated by a physical interpretation of its correlation functions as membrane scattering amplitudes, we re-address whether the Lorentzian BLG theory can be quantized such that it preserves SO(8) superconformal symmetry. We find that this…

High Energy Physics - Theory · Physics 2008-07-15 Herman Verlinde

These lecture notes introduce the multiple membrane theories known as BLG and ABJM. We assume the reader is familiar with string theory, but not with M-theory, 11-dimensional supergravity or membranes. We therefore start with a background…

High Energy Physics - Theory · Physics 2010-12-03 Neil B. Copland

Based on the relation between the notions of Lie triple systems and Jordan algebras, we introduce the $n$-ary Jordan algebras,an $n$-ary generalization of Jordan algebras obtained via the generalization of the following property $\left[…

Rings and Algebras · Mathematics 2020-04-03 Ivan Kaygorodov , Alexander Pozhidaev , Paulo Saraiva

We formulate a refined theory of linear systems, using the methods of a previous paper, "A Theory of Branches for Algebraic Curves", and use it to give a geometric interpretation of the genus of an algebraic curve. Using principles of…

Algebraic Geometry · Mathematics 2010-03-31 Tristram de Piro

We study the SO(8) superconformal theory proposed recently by Bagger and Lambert as a possible worldvolume theory for multiple M2-branes. For their explicit example with gauge group SO(4), we rewrite the theory (originally formulated in…

High Energy Physics - Theory · Physics 2008-11-26 Mark Van Raamsdonk

A simplified version of 3d BL theory is considered, which allows any number N of M2 branes in d=11. The underlying 3-algebra structure is provided by degenerate U(N) Nambu bracket [X,Y,Z] = tr(X) [Y,Z] + tr(Y) [Z,X] + tr(Z) [X,Y], the…

High Energy Physics - Theory · Physics 2009-12-04 A. Morozov
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