Factorization and Discrete States in C=1 Superliouville Theory

Physics – High Energy Physics – High Energy Physics - Theory

Scientific paper

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23 pages, revtex, CNEA-CAB-92-036 and UPRF-92-352

Scientific paper

We study the discrete state structure of $\hat c=1$ superconformal matter coupled to 2-D supergravity. Factorization properties of scattering amplitudes are used to identify these states and to construct the corresponding vertex operators. For both Neveu-Schwarz and Ramond sectors these states are shown to be organized in SU(2) multiplets. The algebra generated by the discrete states is computed in the limit of null cosmological constant.

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