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Unitarity through PT symmetry in Quantum Quadratic Gravity

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arxiv 2410.08278 v4 pith:RLAA422C submitted 2024-10-10 hep-th gr-qc

classification hep-thgr-qc
keywords quantumtheorygravityhermitianquadraticnon-hermitiansymmetrytime
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Theories described by non-Hermitian Hamiltonians are known to possess strictly positive energy eigenvalues and exhibit unitary time evolution if the Hamiltonian is symmetric under discrete parity and time (PT) transformation. In this work, we demonstrate how quantum quadratic gravity, a theory that generally violates unitarity when viewed as a Hermitian quantum field theory, can be complex-deformed into such a PT-symmetric theory with an action that consists of a ghost-less Hermitian free part and non-Hermitian interactions. Paying special attention to the gauge symmetry present in the theory, we quantize in the covariant operator formalism after suggesting how the framework might be extended to the pseudo-Hermitian picture. We find compelling evidence that the resulting quantum theory possesses a unitary inner product and a sensible interpretation of quantum probability, thus avoiding the ghost problem present in the Hermitian formulation of quadratic gravity.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Closed timelike curves in PT-symmetric wormholes

    physics.gen-ph 2025-07 unverdicted novelty 4.0 of 10

    A bimetric PT-symmetric wormhole model is claimed to enable one-way traversal and, when coupled in pairs, to generate closed timelike curves consistent with Novikov's self-consistency principle.

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