Deformed Heisenberg charges in three-dimensional gravity
Abstract We consider the bulk plus boundary phase space for three-dimensional gravity with negative cosmological constant for a particular choice of conformal boundary conditions: the conformal class of the induced metric at the boundary is kept fixed and the mean extrinsic curvature is constrained...
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Online Access: | http://link.springer.com/article/10.1007/JHEP03(2020)175 |
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doaj-4f75f214f52446ed80faed86521e03e92020-11-25T03:04:07ZengSpringerOpenJournal of High Energy Physics1029-84792020-03-012020313710.1007/JHEP03(2020)175Deformed Heisenberg charges in three-dimensional gravityJeevan Chandra Namburi0Wolfgang Wieland1Indian Institute of SciencePerimeter Institute for Theoretical PhysicsAbstract We consider the bulk plus boundary phase space for three-dimensional gravity with negative cosmological constant for a particular choice of conformal boundary conditions: the conformal class of the induced metric at the boundary is kept fixed and the mean extrinsic curvature is constrained to be one. Such specific conformal boundary conditions define so-called Bryant surfaces, which can be classified completely in terms of holomorphic maps from Riemann surfaces into the spinor bundle. To study the observables and gauge symmetries of the resulting bulk plus boundary system, we will introduce an extended phase space, where these holomorphic maps are now part of the gravitational bulk plus boundary phase space. The physical phase space is obtained by introducing two sets of Kac-Moody currents, which are constrained to vanish. The constraints are second-class and the corresponding Dirac bracket yields an infinite-dimensional deformation of the Heisenberg algebra for the spinor-valued surface charges. Finally, we compute the Poisson algebra among the generators of conformal diffeomorphisms and demonstrate that there is no central charge. Although the central charge vanishes and the boundary CFT is likely non-unitary, we will argue that a version of the Cardy formula still applies in this context, such that the entropy of the BTZ black hole can be derived from the degeneracy of the eigenstates of quasi-local energy.http://link.springer.com/article/10.1007/JHEP03(2020)175Classical Theories of GravityModels of Quantum GravityAdS-CFT CorrespondenceChern-Simons Theories |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jeevan Chandra Namburi Wolfgang Wieland |
spellingShingle |
Jeevan Chandra Namburi Wolfgang Wieland Deformed Heisenberg charges in three-dimensional gravity Journal of High Energy Physics Classical Theories of Gravity Models of Quantum Gravity AdS-CFT Correspondence Chern-Simons Theories |
author_facet |
Jeevan Chandra Namburi Wolfgang Wieland |
author_sort |
Jeevan Chandra Namburi |
title |
Deformed Heisenberg charges in three-dimensional gravity |
title_short |
Deformed Heisenberg charges in three-dimensional gravity |
title_full |
Deformed Heisenberg charges in three-dimensional gravity |
title_fullStr |
Deformed Heisenberg charges in three-dimensional gravity |
title_full_unstemmed |
Deformed Heisenberg charges in three-dimensional gravity |
title_sort |
deformed heisenberg charges in three-dimensional gravity |
publisher |
SpringerOpen |
series |
Journal of High Energy Physics |
issn |
1029-8479 |
publishDate |
2020-03-01 |
description |
Abstract We consider the bulk plus boundary phase space for three-dimensional gravity with negative cosmological constant for a particular choice of conformal boundary conditions: the conformal class of the induced metric at the boundary is kept fixed and the mean extrinsic curvature is constrained to be one. Such specific conformal boundary conditions define so-called Bryant surfaces, which can be classified completely in terms of holomorphic maps from Riemann surfaces into the spinor bundle. To study the observables and gauge symmetries of the resulting bulk plus boundary system, we will introduce an extended phase space, where these holomorphic maps are now part of the gravitational bulk plus boundary phase space. The physical phase space is obtained by introducing two sets of Kac-Moody currents, which are constrained to vanish. The constraints are second-class and the corresponding Dirac bracket yields an infinite-dimensional deformation of the Heisenberg algebra for the spinor-valued surface charges. Finally, we compute the Poisson algebra among the generators of conformal diffeomorphisms and demonstrate that there is no central charge. Although the central charge vanishes and the boundary CFT is likely non-unitary, we will argue that a version of the Cardy formula still applies in this context, such that the entropy of the BTZ black hole can be derived from the degeneracy of the eigenstates of quasi-local energy. |
topic |
Classical Theories of Gravity Models of Quantum Gravity AdS-CFT Correspondence Chern-Simons Theories |
url |
http://link.springer.com/article/10.1007/JHEP03(2020)175 |
work_keys_str_mv |
AT jeevanchandranamburi deformedheisenbergchargesinthreedimensionalgravity AT wolfgangwieland deformedheisenbergchargesinthreedimensionalgravity |
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