Higher spin fields in four dimensions, and more generally conformal fields in arbitrary dimensions, can be described by spinning particle models with a gauged SO(N) extended supergravity on the worldline. We consider here the one-loop quantization of these models by studying the corresponding partition function on the one-dimensional torus. After gauge fixing the supergravity multiplet, the partition function reduces to an integral over the corresponding moduli space which is computed using orthogonal polynomial techniques. We obtain a compact formula which gives the number of physical degrees of freedom for all N in all dimensions. As an aside we compute the physical degrees of freedom of the SO(4) = SU(2)xSU(2) model with only a ...
We consider the Sp(2 n ) invariant formulation of higher spin fields on flat and curved backgrounds ...
Higher spin theories can be efficiently described in terms of auxiliary Stückelberg or projective sp...
Higher spin theories can be efficiently described in terms of auxiliary St\"uckelberg or projective ...
Higher spin fields in four dimensions, and more generally conformal fields in arbitrary dimensions, ...
Spinning particle models can be used to describe higher spin fields in first quantization. In this ...
We shortly review on the connection between higher-spin gauge field theories and supersymmetric spin...
We study the one loop effective action for a class of higher spin fields by using a first-quantized...
We study actions for massive bosonic particles of higher spins by dimensionally reducing an action f...
We make use of O(2r+1) spinning particle models to construct linearized higher-spin curvatures in (A...
Relativistic particles with higher spin can be described in first quantization using actions with lo...
none2Guided by a spinning particle model with U(N)-extended supergravity on the worldline we derive ...
We study a very general four dimensional Field Theory model describing the dynamics of a massless hi...
We consider the Sp(2 n ) invariant formulation of higher spin fields on flat and curved backgrounds ...
Higher spin theories can be efficiently described in terms of auxiliary Stückelberg or projective sp...
Higher spin theories can be efficiently described in terms of auxiliary St\"uckelberg or projective ...
Higher spin fields in four dimensions, and more generally conformal fields in arbitrary dimensions, ...
Spinning particle models can be used to describe higher spin fields in first quantization. In this ...
We shortly review on the connection between higher-spin gauge field theories and supersymmetric spin...
We study the one loop effective action for a class of higher spin fields by using a first-quantized...
We study actions for massive bosonic particles of higher spins by dimensionally reducing an action f...
We make use of O(2r+1) spinning particle models to construct linearized higher-spin curvatures in (A...
Relativistic particles with higher spin can be described in first quantization using actions with lo...
none2Guided by a spinning particle model with U(N)-extended supergravity on the worldline we derive ...
We study a very general four dimensional Field Theory model describing the dynamics of a massless hi...
We consider the Sp(2 n ) invariant formulation of higher spin fields on flat and curved backgrounds ...
Higher spin theories can be efficiently described in terms of auxiliary Stückelberg or projective sp...
Higher spin theories can be efficiently described in terms of auxiliary St\"uckelberg or projective ...