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Teschner,On the relation between quantum Liouville theory and the quantized Teichm¨ uller spaces,Int

2 Pith papers cite this work. Polarity classification is still indexing.

2 Pith papers citing it
abstract

We review both the construction of conformal blocks in quantum Liouville theory and the quantization of Teichm\"uller spaces as developed by Kashaev, Checkov and Fock. In both cases one assigns to a Riemann surface a Hilbert space acted on by a representation of the mapping class group. According to a conjecture of H. Verlinde, the two are equivalent. We describe some key steps in the verification of this conjecture.

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hep-th 2

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2026 2

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UNVERDICTED 2

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background 2

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background 1 unclear 1

representative citing papers

The Super Virasoro Minimal String from 3d Supergravity

hep-th · 2026-04-28 · unverdicted · novelty 8.0

The super Virasoro minimal string arises from quantizing 3d supergravity, with 0A+ and 0B+ dual to the bosonic minimal string matrix integral, 0B- to one with inverse square root singularity, and 0A- having vanishing non-trivial perturbative amplitudes.

An observer's quantization of 3d de Sitter

hep-th · 2026-06-24 · unverdicted · novelty 6.0

Proposes an SL(2,Z) sum of Kerr-lens geometries in 3d dS gravity whose spectral density is computed via crosscap amplitudes in CLS ⊗ CLS, matching semi-classical predictions and reducing in a simple case to GΣ ⊗ GΣ on the observer worldline.

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Showing 2 of 2 citing papers.

  • The Super Virasoro Minimal String from 3d Supergravity hep-th · 2026-04-28 · unverdicted · none · ref 20

    The super Virasoro minimal string arises from quantizing 3d supergravity, with 0A+ and 0B+ dual to the bosonic minimal string matrix integral, 0B- to one with inverse square root singularity, and 0A- having vanishing non-trivial perturbative amplitudes.

  • An observer's quantization of 3d de Sitter hep-th · 2026-06-24 · unverdicted · none · ref 124 · internal anchor

    Proposes an SL(2,Z) sum of Kerr-lens geometries in 3d dS gravity whose spectral density is computed via crosscap amplitudes in CLS ⊗ CLS, matching semi-classical predictions and reducing in a simple case to GΣ ⊗ GΣ on the observer worldline.