Unimodular time in JT gravity: a holographic clock
arXiv:2601.07911 · doi:10.1007/JHEP08(2026)193
Abstract
How is a ''bulk clock'' encoded holographically? We address this in Jackiw-Teitelboim (JT) gravity, where a natural physical clock emerges by promoting the vacuum energy to a dynamical variable: the vacuum cosmological constant becomes a top form degree of freedom conjugate to spacetime volume, thereby defining a notion of bulk physical time. This construction is naturally formulated in the Henneaux-Teitelboim (HT) framework. We show that the boundary dynamics is the Schwarzian mode coupled to a free particle on , matching the universal low-energy effective action of the complex SYK model. By further clarifying the role of the vacuum cosmological constant as a top form, we establish the equivalence between JT gravity coupled to two-dimensional Maxwell theory and 2d HT gravity via an explicit field redefinition. The initial question is addressed: we show that the resulting boundary theory can itself be rewritten as an observer action, equivalently a -dimensional HT theory. This yields a direct identification of the boundary clock with the phase mode, and makes its relation to the bulk clock explicit.
42 pages, 3 figures
References in corpus (46)
- Large N Field Theories, String Theory and Gravity
- Comments on the Sachdev-Ye-Kitaev model
- Flux Compactification
- Chaos in AdS holography
- An Investigation of AdS Backreaction and Holography
- The Extreme Kerr Throat Geometry: A Vacuum Analog of AdS_2 x S^2
- Thermoelectric transport in disordered metals without quasiparticles: the SYK models and holography
- Solvable Models of Quantum Black Holes: A Review on Jackiw-Teitelboim Gravity
- The quantization of unimodular gravity and the cosmological constant problem
- On the Dynamics of Near-Extremal Black Holes
- Sequestering the Standard Model Vacuum Energy
- The Schwarzian Theory - Origins
- The Schwarzian Theory - A Wilson Line Perspective
- On the cosmological constant problem
- A note on classical and quantum unimodular gravity
- An exact quantization of Jackiw-Teitelboim gravity
- A Manifestly Local Theory of Vacuum Energy Sequestering
- Defects in Jackiw-Teitelboim Quantum Gravity
- Conformal Symmetry Breaking and Thermodynamics of Near-Extremal Black Holes
- Universal low temperature theory of charged black holes with AdS horizons
- Unimodular Gravity vs General Relativity: A status report
- Jackiw-Teitelboim Gravity and Rotating Black Holes
- Flat space holography and complex SYK
- How unimodular gravity theories differ from general relativity at quantum level
- Fine Structure of Jackiw-Teitelboim Quantum Gravity
- Unimodular loop quantum gravity and the problems of time
- Unimodular quantum gravity and the cosmological constant
- Edge Dynamics from the Path Integral: Maxwell and Yang-Mills
- New boundary conditions for AdS
- Towards a bulk description of higher spin SYK
- New Weyl-invariant vector-tensor theory for the cosmological constant
- Cosmological time and the constants of nature
- Losing the trace to find dynamical Newton or Planck constants
- Warped Schwarzian theory
- Flat JT Gravity and the BMS-Schwarzian
- From black holes to baby universes in CGHS gravity
- Minisuperspace Quantum Cosmology from the Einstein-Cartan Path Integral
- A Solvable Model of Flat Space Holography
- Quantum cosmology of a dynamical Lambda
- A Matrix Model for Flat Space Quantum Gravity
- Black hole singularity resolution in unimodular gravity from unitarity
- de Sitter Space Decay and Cosmological Constant Relaxation in Unimodular Gravity with Charged Membranes
- Vortices, topology and time
- Quantum Schwarzschild-(A)dS Black Holes: Unitarity and Singularity Resolution
- Holography in CGHS supergravity
- Cyclic Kruskal Universe: a quantum-corrected Schwarzschild black hole in unitary unimodular gravity