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Strings, loops and others: a critical survey of the present approaches to quantum gravity

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arxiv gr-qc/9803024 v3 pith:YEEOPYQA submitted 1998-03-05 gr-qc hep-th

classification gr-qchep-th
keywords quantumgravityspacetimecriticalfieldmainmodelsreview
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I review the present theoretical attempts to understand the quantum properties of spacetime. In particular, I illustrate the main achievements and the main difficulties in: string theory, loop quantum gravity, discrete quantum gravity (Regge calculus, dynamical triangulations and simplicial models), Euclidean quantum gravity, perturbative quantum gravity, quantum field theory on curved spacetime, noncommutative geometry, null surfaces, topological quantum field theories and spin foam models. I also briefly review several recent advances in understanding black hole entropy and attempt a critical discussion of our present understanding of quantum spacetime.

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  1. Simpson-Visser-AdS Black Holes: Thermodynamics and Binary Merger

    gr-qc 2025-11 unverdicted novelty 4.0 of 10

    SV-regularized AdS black holes show parameter-dependent phase transitions and non-monotonic post-merger mass bounds that rise then fall sharply.

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