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Classification and construction of unitary topological field theories in two dimensions
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abstract
We prove that unitary two-dimensional topological field theories are uniquely characterized by $n$ positive real numbers $\lambda _1,\ldots \lambda _n$ which can be regarded as the eigenvalues of a hermitean handle creation operator. The number $n$ is the dimension of the Hilbert space associated with the circle and the partition functions for closed surfaces have the form $$ Z_g=\sum_{i=1}^{n}\lambda _i^{g-1} $$ where $g$ is the genus. The eigenvalues can be arbitary positive numbers. We show how such a theory can be constructed on triangulated surfaces.
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Cited by 1 Pith paper
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On Atiyah-Segal axioms for Witten-type TQFTs
A modified trace map with a background-particle insertion is proposed, yielding a unitary Atiyah-Segal formulation for Witten-type TQFTs; the mechanism is shown for CP^n.
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