Published September 15, 2022 | Version public
Discussion Paper

Interferometer Response to Geontropic Fluctuations

Abstract

We model vacuum fluctuations in quantum gravity with a scalar field, characterized by a high occupation number, coupled to the metric. The occupation number of the scalar is given by a thermal density matrix, whose form is motivated by fluctuations in the vacuum energy, which have been shown to be conformal near a light-sheet horizon. For the experimental measurement of interest in an interferometer, the size of the energy fluctuations is fixed by the area of a surface bounding the volume of spacetime being interrogated by an interferometer. We compute the interferometer response to these "geontropic" scalar-metric fluctuations, and apply our results to current and future interferometer measurements, such as LIGO and the proposed GQuEST experiment.

Additional Information

We thank Temple He, Allic Sivaramakrishnan, and Jordan Wilson-Gerow for discussions and comments on the draft, and Lee McCuller for comments and help with recasting the Holometer bounds. We are supported by the Heising-Simons Foundation "Observational Signatures of Quantum Gravity" collaboration grant 2021- 2817. The work of KZ is also supported by a Simons Investigator award and the U.S. Department of Energy, Office of Science, Office of High Energy Physics, under Award No. DE-SC0011632. The work of YC and DL is also supported by the Simons Foundation (Award Number 568762), the Brinson Foundation and the National Science Foundation (via grants PHY-2011961 and PHY2011968)

Additional details

Identifiers

Eprint ID
117117
Resolver ID
CaltechAUTHORS:20220922-220443602

Funding

Heising-Simons Foundation
2021-2817
Department of Energy (DOE)
DE-SC0011632
Simons Foundation
568762
Brinson Foundation
NSF
PHY-2011961
NSF
PHY-2011968

Dates

Created
2022-09-23
Created from EPrint's datestamp field
Updated
2023-06-02
Created from EPrint's last_modified field

Caltech Custom Metadata

Caltech groups
Astronomy Department , Walter Burke Institute for Theoretical Physics , Physics Department
Other Numbering System Name
CALT-TH
Other Numbering System Identifier
2022-033