We give a non-technical outline of a program to study the (2,0) theories in six space-time dimensions. Away from the origin of their moduli space, these theories describe the interactions of tensor multiplets and self-dual spinning strings. We argue that if the ratio between the square of the energy of a process and the string tension is taken to be small, it should be possible to study the dynamics of such a system perturbatively in this parameter. As a first step in this direction, we perform a classical computation of the amplitude for scattering chiral tensor and scalar fields (i.e. the bosonic part of a tensor multiplet) against a self-dual spinnless string
We investigate the concept of superconformal symmetry in six dimensions, applied to the interacting ...
In this thesis we give a brief review of the six-dimensional(2,0) theories and how they emerge from ...
This thesis consists of an introductory text, which is divided into two parts, and six appended rese...
We give a non-technical outline of a program to study the (2,0) theories in six space-time dimension...
We study the scattering of low-energy tensor multiplet particles against a Bogomol'nyi-Prasad-Sommer...
We study the scattering of low-energy tensor multiplet particles against a BPS saturated cosmic stri...
We study the scattering of low-energy tensor multiplet particles against a Bogomol\u27nyi-Prasad-Som...
We construct an interaction between a (2,0) tensor multiplet in six dimensions and a self-dual strin...
We construct a unique (2,0) supersymmetric action in six dimensions, describing a tensor multiplet i...
We construct an interaction between a (2,0) tensor multiplet in six dimensions and a self-dual strin...
In this thesis we give a brief review of the six-dimensional (2,0) theories and how they emerge from...
We construct a unique (2,0) supersymmetric action in six dimensions, describing a tensor multiplet i...
We construct a unique (2,0) supersymmetric action in six dimensions, describing a tensor multiplet i...
By considering N=2 string amplitudes we determine the (2+2)-dimensional target space action for the ...
This thesis covers two main topics: the tensorial structure of quantum field theory correlators in g...
We investigate the concept of superconformal symmetry in six dimensions, applied to the interacting ...
In this thesis we give a brief review of the six-dimensional(2,0) theories and how they emerge from ...
This thesis consists of an introductory text, which is divided into two parts, and six appended rese...
We give a non-technical outline of a program to study the (2,0) theories in six space-time dimension...
We study the scattering of low-energy tensor multiplet particles against a Bogomol'nyi-Prasad-Sommer...
We study the scattering of low-energy tensor multiplet particles against a BPS saturated cosmic stri...
We study the scattering of low-energy tensor multiplet particles against a Bogomol\u27nyi-Prasad-Som...
We construct an interaction between a (2,0) tensor multiplet in six dimensions and a self-dual strin...
We construct a unique (2,0) supersymmetric action in six dimensions, describing a tensor multiplet i...
We construct an interaction between a (2,0) tensor multiplet in six dimensions and a self-dual strin...
In this thesis we give a brief review of the six-dimensional (2,0) theories and how they emerge from...
We construct a unique (2,0) supersymmetric action in six dimensions, describing a tensor multiplet i...
We construct a unique (2,0) supersymmetric action in six dimensions, describing a tensor multiplet i...
By considering N=2 string amplitudes we determine the (2+2)-dimensional target space action for the ...
This thesis covers two main topics: the tensorial structure of quantum field theory correlators in g...
We investigate the concept of superconformal symmetry in six dimensions, applied to the interacting ...
In this thesis we give a brief review of the six-dimensional(2,0) theories and how they emerge from ...
This thesis consists of an introductory text, which is divided into two parts, and six appended rese...