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New Boundary Conditions for AdS3

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

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abstract

New chiral boundary conditions are found for quantum gravity with matter on AdS3. The associated asymptotic symmetry group is generated by a single right-moving U(1) Kac-Moody-Virasoro algebra with c_R = 3l/2G. The Kac-Moody zero mode generates global left-moving translations and equals, for a BTZ black hole, the sum of the total mass and spin. The level is positive about the global vacuum and negative in the black hole sector, corresponding to ergosphere formation. Realizations arising in Chern-Simons gravity and string theory are analyzed. The new boundary conditions are shown to naturally arise for warped AdS3 in the limit that the warp parameter is taken to zero.

fields

hep-th 2

years

2026 1 2025 1

verdicts

UNVERDICTED 2

representative citing papers

Revisiting near-extremal and near-BPS black holes in AdS3 supergravity

hep-th · 2026-04-27 · unverdicted · novelty 6.0

In AdS3 supergravity, the gravitational path integral at low temperatures in the near-horizon region is inequivalent to that of the BTZ background, with distinct contributions from bosonic fluctuations, Chern-Simons fields, and spin-3/2 modes leading to a quantum-level disagreement between near-ext

citing papers explorer

Showing 2 of 2 citing papers.

  • Integrability in Three-Dimensional Gravity: Eigenfunction-Forced KdV Flows hep-th · 2025-10-12 · unverdicted · none · ref 20 · internal anchor

    Derives forced KdV equation from Chern-Simons 3D gravity with chiral boundaries, with forcing set by Schrödinger eigenfunctions, and solves reflectionless and radiative sectors via inverse scattering.

  • Revisiting near-extremal and near-BPS black holes in AdS3 supergravity hep-th · 2026-04-27 · unverdicted · none · ref 12

    In AdS3 supergravity, the gravitational path integral at low temperatures in the near-horizon region is inequivalent to that of the BTZ background, with distinct contributions from bosonic fluctuations, Chern-Simons fields, and spin-3/2 modes leading to a quantum-level disagreement between near-ext