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A Liouville string approach to microscopic time and cosmology

In the non-critical string framework that we have proposed recently, the time $t$ is identified with a dynamical local renormalization group scale, the Liouville mode, and behaves as a statistical evolution parameter, flowing irreversibly from an infrared fixed point - which we conjecture to be a to...

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Detalles Bibliográficos
Autores principales: Ellis, John R., Mavromatos, N.E., Nanopoulos, Dimitri V.
Lenguaje:eng
Publicado: 1993
Materias:
Acceso en línea:http://cds.cern.ch/record/256574
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author Ellis, John R.
Mavromatos, N.E.
Nanopoulos, Dimitri V.
author_facet Ellis, John R.
Mavromatos, N.E.
Nanopoulos, Dimitri V.
author_sort Ellis, John R.
collection CERN
description In the non-critical string framework that we have proposed recently, the time $t$ is identified with a dynamical local renormalization group scale, the Liouville mode, and behaves as a statistical evolution parameter, flowing irreversibly from an infrared fixed point - which we conjecture to be a topological string phase - to an ultraviolet one - which corresponds to a static critical string vacuum. When applied to a toy two-dimensional model of space-time singularities, this formalism yields an apparent renormalization of the velocity of light, and a $t$-dependent form of the uncertainty relation for position and momentum of a test string. We speculate within this framework on a stringy alternative to conventional field-theoretical inflation, and the decay towards zero of the cosmological constant in a maximally-symmetric space.
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spelling cern-2565742020-07-23T02:48:34Zhttp://cds.cern.ch/record/256574engEllis, John R.Mavromatos, N.E.Nanopoulos, Dimitri V.A Liouville string approach to microscopic time and cosmologyGeneral Theoretical PhysicsIn the non-critical string framework that we have proposed recently, the time $t$ is identified with a dynamical local renormalization group scale, the Liouville mode, and behaves as a statistical evolution parameter, flowing irreversibly from an infrared fixed point - which we conjecture to be a topological string phase - to an ultraviolet one - which corresponds to a static critical string vacuum. When applied to a toy two-dimensional model of space-time singularities, this formalism yields an apparent renormalization of the velocity of light, and a $t$-dependent form of the uncertainty relation for position and momentum of a test string. We speculate within this framework on a stringy alternative to conventional field-theoretical inflation, and the decay towards zero of the cosmological constant in a maximally-symmetric space.In the non-critical string framework that we have proposed recently, the time $t$ is identified with a dynamical local renormalization group scale, the Liouville mode, and behaves as a statistical evolution parameter, flowing irreversibly from an infrared fixed point - which we conjecture to be a topological string phase - to an ultraviolet one - which corresponds to a static critical string vacuum. When applied to a toy two-dimensional model of space-time singularities, this formalism yields an apparent renormalization of the velocity of light, and a $t$-dependent form of the uncertainty relation for position and momentum of a test string. We speculate within this framework on a stringy alternative to conventional field-theoretical inflation, and the decay towards zero of the cosmological constant in a maximally-symmetric space.hep-th/9311148CERN-TH-7000-93CTP-TAMU-66-93ACT-23-93ENSLAPP-A-445-93OUTP-93-26-PACT-1993-23CERN-TH-7000-93CTP-TAMU-93-66ENSLAPP-A-445OUTP-93-26-Poai:cds.cern.ch:2565741993
spellingShingle General Theoretical Physics
Ellis, John R.
Mavromatos, N.E.
Nanopoulos, Dimitri V.
A Liouville string approach to microscopic time and cosmology
title A Liouville string approach to microscopic time and cosmology
title_full A Liouville string approach to microscopic time and cosmology
title_fullStr A Liouville string approach to microscopic time and cosmology
title_full_unstemmed A Liouville string approach to microscopic time and cosmology
title_short A Liouville string approach to microscopic time and cosmology
title_sort liouville string approach to microscopic time and cosmology
topic General Theoretical Physics
url http://cds.cern.ch/record/256574
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