127 research outputs found
d=2, N=2 Superconformally Covariant Operators and Super W-Algebras
We construct and classify superconformally covariant differential operators
defined on N=2 super Riemann surfaces. By contrast to the N=1 theory, these
operators give rise to partial rather than ordinary differential equations
which leads to novel features for their matrix representation. The latter is
applied to the derivation of N=2 super W-algebras in terms of N=2 superfields.Comment: 29 pages, LaTe
Formalisme de Dirac et surprises mathematiques en mecanique quantique
Differents formalismes sont utilises en mecanique quantique pour la
description des etats et des observables : la mecanique ondulatoire, la
mecanique matricielle et le formalisme invariant. Nous discutons les problemes
et inconvenients du formalisme invariant ainsi que ceux de la notation des bras
et kets introduite par Dirac dans ce contexte. Nous indiquons comment tous les
problemes peuvent etre resolus ou du moins evites. Une serie d'exemples
illustre les points souleves et montre comment l'insouciance mathematique peut
aisement conduire a des contradictions mathematiques surprenantes.Comment: 40 pages, French version of the preprint LYCEN 9960
Non-standard matrix formats of Lie superalgebras
The standard format of matrices belonging to Lie superalgebras consists of
partitioning the matrices into even and odd blocks. In this paper, we study
other possible matrix formats and in particular the so-called diagonal format
which naturally occurs in various applications, e.g. in superconformal field
theory, superintegrable models, for super W-algebras and quantum supergroups
Vector supersymmetry in topological field theories
We present a simple derivation of vector supersymmetry transformations for
topological field theories of Schwarz- and Witten-type. Our method is similar
to the derivation of BRST-transformations from the so-called horizontality
conditions or Russian formulae. We show that this procedure reproduces in a
concise way the known vector supersymmetry transformations of various
topological models and we use it to obtain some new transformations of this
type for 4d topological YM-theories in different gauges.Comment: 19 page
Interacting six-dimensional topological field theories
We study the gauge-fixing and symmetries (BRST-invariance and vector
supersymmetry) of various six-dimensional topological models involving Abelian
or non-Abelian 2-form potentials.Comment: 11 page
Contributions of M. Daoud, F. Gieres and M. Kibler to the "Concise Encyclopedia of Supersymmetry"
Théori
On the symmetries of BF models and their relation with gravity
The perturbative finiteness of various topological models (e.g. BF models)
has its origin in an extra symmetry of the gauge-fixed action, the so-called
vector supersymmetry. Since an invariance of this type also exists for gravity
and since gravity is closely related to certain BF models, vector supersymmetry
should also be useful for tackling various aspects of quantum gravity. With
this motivation and goal in mind, we first extend vector supersymmetry of BF
models to generic manifolds by incorporating it into the BRST symmetry within
the Batalin-Vilkovisky framework. Thereafter, we address the relationship
between gravity and BF models, in particular for three-dimensional space-time.Comment: 29 page
Are N=1 and N=2 supersymmetric quantum mechanics equivalent?
After recalling different formulations of the definition of supersymmetric
quantum mechanics given in the literature, we discuss the relationships between
them in order to provide an answer to the question raised in the title.Comment: 15 page
On the holomorphic factorization for superconformal fields
For a generic value of the central charge, we prove the holomorphic
factorization of partition functions for free superconformal fields which are
defined on a compact Riemann surface without boundary. The partition functions
are viewed as functionals of the Beltrami coefficients and their fermionic
partners which variables parametrize superconformal classes of metrics.Comment: 5 pages, LATEX, MPI-Ph/92-7
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