activity
19942011
most citedFree massless higher-superspin superfields on the anti-de Sitter superspace

34 citations · 34 across the 1 of their papers we have counts for

collaborators

6 papers

hep-th2011★ 34 cited

Free massless higher-superspin superfields on the anti-de Sitter superspace

S. M. Kuzenko, A. G. Sibiryakov

Free massless higher-superspin superfields on the N=1, D=4 anti-de Sitter superspace are introduced. The linearized gauge transformations are postulated. Two families of dually equ…

hep-th1999

Explicit N=2 supersymmetry for higher-spin massless fields in D=4 AdS superspace

A. Yu. Segal, A. G. Sibiryakov

We develop two N=2 superfield formulations of free equations of motion for the joint model of all D=4 massless higher-superspin fields in generating form. The explicit Osp(2|4) sup…

hep-th1996

Towards a Unified Theory of Massless Superfields of All Superspins

S. James Gates, Sergei M. Kuzenko, Alexander G. Sibiryakov

We describe the ``universal'' action for massless superfields of all superspins in N = 1, D = 4 anti-de Sitter superspace as a gauge theory of unconstrained superfields taking thei…

hep-th1996

N = 2 Supersymmetry of Higher Superspin Massless Theories

S. James Gates, Sergei M. Kuzenko, Alexander G. Sibiryakov

We present N=2 supersymmetry transformations, both in N=1, D=4 Minkowski and anti-de Sitter superspaces, for higher superspin massless theories. It is noted that the existence of d…

hep-th1995

Quantization of Higher Spin Superfields in the anti-de Sitter Superspace

I. L. Buchbinder, S. M. Kuzenko, A. G. Sibiryakov

We describe a Lagrangian quantization of the free massless gauge superfield theories of higher superspins both in the anti-de Sitter and flat global superspaces.

hep-th1994

Induced Gravity from the Consistent String Theory Coupled with Two - Dimensional Quantum Gravity

I. L. Buchbinder, I. L. Shapiro, A. G. Sibiryakov

The unified theory of string and two-dimensional quantum gravity is considered. The action for two-dimensional gravity is choosen in a well-known induced form and thus gravity pose…