We explore the relationship between the quantum state of a compact matter source and of its asymptotic graviton field. For a matter source in an energy eigenstate, the graviton state is determined at leading order by the energy eigenvalue. Insofar as there are no accidental energy degeneracies there is a one to one map between graviton states on the boundary of spacetime and the matter source states. Effective field theory allows us to compute a purely quantum gravitational effect which causes the subleading asymptotic behavior of the graviton state to depend on the internal structure of the source. This establishes the existence of ubiquitous quantum hair due to gravitational effects.

Calmet, X., Casadio, R., Hsu, S.D., Kuipers, F. (2022). Quantum Hair from Gravity. PHYSICAL REVIEW LETTERS, 128(11), 1-6 [10.1103/PhysRevLett.128.111301].

Quantum Hair from Gravity

Casadio, Roberto;
2022

Abstract

We explore the relationship between the quantum state of a compact matter source and of its asymptotic graviton field. For a matter source in an energy eigenstate, the graviton state is determined at leading order by the energy eigenvalue. Insofar as there are no accidental energy degeneracies there is a one to one map between graviton states on the boundary of spacetime and the matter source states. Effective field theory allows us to compute a purely quantum gravitational effect which causes the subleading asymptotic behavior of the graviton state to depend on the internal structure of the source. This establishes the existence of ubiquitous quantum hair due to gravitational effects.
2022
Calmet, X., Casadio, R., Hsu, S.D., Kuipers, F. (2022). Quantum Hair from Gravity. PHYSICAL REVIEW LETTERS, 128(11), 1-6 [10.1103/PhysRevLett.128.111301].
Calmet, Xavier; Casadio, Roberto; Hsu, Stephen D. H.; Kuipers, Folkert
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/878763
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