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Quantum Liouville Cosmology

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

5 Pith papers citing it
abstract

We provide a detailed analysis of the disk path integral of timelike Liouville theory, conceived as a tractable and precise toy-model quantum cosmology in two dimensions. Disk path integrals with the insertion of matter field operators, taken along a judiciously chosen complex contour, yield states akin to the Hartle-Hawking wavefunction. Working in the fixed $K$-representation, where $K$ is the trace of the extrinsic curvature, we compute the one-loop wavefunctions and put forward a conjecture for the all-loop expressions. A suitable pairing of Liouville disk path integrals yields a $K$-independent quantity that may form the basis for a well-defined inner product on the space of Euclidean histories. We also consider other ensembles, including one with fixed area, and provide a static patch perspective with a timelike feature.

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representative citing papers

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.

Undulating Conformal Boundaries in 3D Gravity

hep-th · 2026-05-08 · unverdicted · novelty 6.0

Inhomogeneous torus boundaries in 3D gravity are thermodynamically favourable for AdS in the range 2 < K |Λ|^{-1/2} < 3/√2 and support macroscopic entropy for all Λ.

The yes boundaries wavefunctions of the universe

hep-th · 2026-04-11 · unverdicted · novelty 6.0

Using two timelike boundaries and a nearly maximally entangled thermofield double state from dressed de Sitter Hamiltonian theories, the authors construct wavefunctions for extended cosmological spacetimes that include the future wedge and resolve entanglement entropy issues via 3D constrained path

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Showing 4 of 4 citing papers after filters.

  • A Tale of Two Hartle-Hawking Wave Functions: Fully Gravitational vs Partially Frozen hep-th · 2026-05-13 · unverdicted · none · ref 77 · internal anchor

    In AdS the fully gravitational Hartle-Hawking wave function acquires a nontrivial one-loop phase while the partially frozen version stays real and positive; a partially frozen de Sitter sphere shows phase cancellation.

  • An observer's quantization of 3d de Sitter hep-th · 2026-06-24 · unverdicted · none · ref 102 · 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.

  • Undulating Conformal Boundaries in 3D Gravity hep-th · 2026-05-08 · unverdicted · none · ref 24 · internal anchor

    Inhomogeneous torus boundaries in 3D gravity are thermodynamically favourable for AdS in the range 2 < K |Λ|^{-1/2} < 3/√2 and support macroscopic entropy for all Λ.

  • The yes boundaries wavefunctions of the universe hep-th · 2026-04-11 · unverdicted · none · ref 31 · internal anchor

    Using two timelike boundaries and a nearly maximally entangled thermofield double state from dressed de Sitter Hamiltonian theories, the authors construct wavefunctions for extended cosmological spacetimes that include the future wedge and resolve entanglement entropy issues via 3D constrained path