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Distance measurement and wave dispersion in a Liouville-string approach to quantum gravity

Within a Liouville approach to non-critical string theory, we discuss space-time foam effects on the propagation of low-energy particles. We find an induced frequency-dependent dispersion in the propagation of a wave packet, and observe that this would affect the outcome of measurements involving lo...

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Detalles Bibliográficos
Autores principales: Amelino-Camelia, G, Ellis, Jonathan Richard, Mavromatos, Nikolaos E, Nanopoulos, Dimitri V
Lenguaje:eng
Publicado: 1996
Materias:
Acceso en línea:https://dx.doi.org/10.1142/S0217751X97000566
http://cds.cern.ch/record/304181
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author Amelino-Camelia, G
Ellis, Jonathan Richard
Mavromatos, Nikolaos E
Nanopoulos, Dimitri V
author_facet Amelino-Camelia, G
Ellis, Jonathan Richard
Mavromatos, Nikolaos E
Nanopoulos, Dimitri V
author_sort Amelino-Camelia, G
collection CERN
description Within a Liouville approach to non-critical string theory, we discuss space-time foam effects on the propagation of low-energy particles. We find an induced frequency-dependent dispersion in the propagation of a wave packet, and observe that this would affect the outcome of measurements involving low-energy particles as probes. In particular, the maximum possible order of magnitude of the space-time foam effects would give rise to an error in the measurement of distance comparable to that independently obtained in some recent heuristic quantum-gravity analyses. We also briefly compare these error estimates with the precision of astrophysical measurements.
id cern-304181
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1996
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spelling cern-3041812019-09-30T06:29:59Zdoi:10.1142/S0217751X97000566http://cds.cern.ch/record/304181engAmelino-Camelia, GEllis, Jonathan RichardMavromatos, Nikolaos ENanopoulos, Dimitri VDistance measurement and wave dispersion in a Liouville-string approach to quantum gravityParticle Physics - TheoryWithin a Liouville approach to non-critical string theory, we discuss space-time foam effects on the propagation of low-energy particles. We find an induced frequency-dependent dispersion in the propagation of a wave packet, and observe that this would affect the outcome of measurements involving low-energy particles as probes. In particular, the maximum possible order of magnitude of the space-time foam effects would give rise to an error in the measurement of distance comparable to that independently obtained in some recent heuristic quantum-gravity analyses. We also briefly compare these error estimates with the precision of astrophysical measurements.hep-th/9605211ACT-1996-7CERN-TH-96-143CTP-TAMU-96-21OUTP-96-24-Poai:cds.cern.ch:3041811996-05-29
spellingShingle Particle Physics - Theory
Amelino-Camelia, G
Ellis, Jonathan Richard
Mavromatos, Nikolaos E
Nanopoulos, Dimitri V
Distance measurement and wave dispersion in a Liouville-string approach to quantum gravity
title Distance measurement and wave dispersion in a Liouville-string approach to quantum gravity
title_full Distance measurement and wave dispersion in a Liouville-string approach to quantum gravity
title_fullStr Distance measurement and wave dispersion in a Liouville-string approach to quantum gravity
title_full_unstemmed Distance measurement and wave dispersion in a Liouville-string approach to quantum gravity
title_short Distance measurement and wave dispersion in a Liouville-string approach to quantum gravity
title_sort distance measurement and wave dispersion in a liouville-string approach to quantum gravity
topic Particle Physics - Theory
url https://dx.doi.org/10.1142/S0217751X97000566
http://cds.cern.ch/record/304181
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AT ellisjonathanrichard distancemeasurementandwavedispersioninaliouvillestringapproachtoquantumgravity
AT mavromatosnikolaose distancemeasurementandwavedispersioninaliouvillestringapproachtoquantumgravity
AT nanopoulosdimitriv distancemeasurementandwavedispersioninaliouvillestringapproachtoquantumgravity