Algebra of diffeomorphism-invariant observables in Jackiw-Teitelboim gravity

Abstract In this paper we use the covariant Peierls bracket to compute the algebra of a sizable number of diffeomorphism-invariant observables in classical Jackiw-Teitelboim gravity coupled to fairly arbitrary matter. We then show that many recent results, including the construction of traversable w...

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Bibliographic Details
Main Authors: Harlow, Daniel (Author), Wu, Jie-qiang (Author)
Format: Article
Language:English
Published: Springer Science and Business Media LLC, 2022-05-23T20:02:41Z.
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Online Access:Get fulltext
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100 1 0 |a Harlow, Daniel  |e author 
700 1 0 |a Wu, Jie-qiang  |e author 
245 0 0 |a Algebra of diffeomorphism-invariant observables in Jackiw-Teitelboim gravity 
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856 |z Get fulltext  |u https://hdl.handle.net/1721.1/142644.2 
520 |a Abstract In this paper we use the covariant Peierls bracket to compute the algebra of a sizable number of diffeomorphism-invariant observables in classical Jackiw-Teitelboim gravity coupled to fairly arbitrary matter. We then show that many recent results, including the construction of traversable wormholes, the existence of a family of SL(2, ℝ) algebras acting on the matter fields, and the calculation of the scrambling time, can be recast as simple consequences of this algebra. We also use it to clarify the question of when the creation of an excitation deep in the bulk increases or decreases the boundary energy, which is of crucial importance for the "typical state" versions of the firewall paradox. Unlike the "Schwarzian" or "boundary particle" formalism, our techniques involve no unphysical degrees of freedom and naturally generalize to higher dimensions. We do a few higher-dimensional calculations to illustrate this, which indicate that the results we obtain in JT gravity are fairly robust. 
546 |a en 
655 7 |a Article 
773 |t Journal of High Energy Physics