Statistical Measures of Planck Scale Signal Correlations in Interferometers
arXiv:1506.06808 · doi:10.1088/1361-6382/aa601e
Abstract
A model-independent statistical framework is presented to interpret data from systems where the mean time derivative of positional cross correlation between world lines, a measure of spreading in a quantum geometrical wave function, is measured with a precision smaller than the Planck time. The framework provides a general way to constrain possible departures from perfect independence of classical world lines, associated with Planck scale bounds on positional information. A parametrized candidate set of possible correlation functions is shown to be consistent with the known causal structure of the classical geometry measured by an apparatus, and the holographic scaling of information suggested by gravity. Frequency-domain power spectra are derived that can be compared with interferometer data. Simple projections of sensitivity for specific experimental set-ups suggests that measurements will directly yield constraints on a universal time derivative of the correlation function, and thereby confirm or rule out a class of Planck scale departures from classical geometry.
19 pages, 10 figures. This is an author-created, un-copyedited version of an article published in Classical and Quantum Gravity. IOP Publishing Ltd is not responsible for any errors or omissions in this version of the manuscript or any version derived from it. The Version of Record is available online at the DOI link below
References in corpus (11)
- Advanced LIGO
- GW150914: The Advanced LIGO Detectors in the Era of First Discoveries
- Measurement of Quantum Fluctuations in Geometry
- First measurements of high frequency cross-spectra from a pair of large Michelson interferometers
- The Holometer: An Instrument to Probe Planckian Quantum Geometry
- New Constraints on Quantum Gravity from X-ray and Gamma-Ray Observations
- Indeterminacy of Holographic Quantum Geometry
- Black holes, information, and locality
- Exotic Rotational Correlations in Quantum Geometry
- Deriving particle physics from quantum gravity: a plan
- Quantum Entanglement of Matter and Geometry in Large Systems
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