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Discrete state moduli of string theory from c=1 matrix model
We propose a new formulation of the space-time interpretation of the c=1 matrix model. Our formulation uses the well-known leg-pole factor that relates the matrix model amplitudes to that of the 2-dimensional string theory, but includes fluctuations around the fermi vacuum on {\sl both sides} of the...
Autores principales: | , , |
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Lenguaje: | eng |
Publicado: |
1995
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1016/0550-3213(95)00493-C http://cds.cern.ch/record/284509 |
_version_ | 1780888175406743552 |
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author | Dhar, Avinash Mandal, Gautam Wadia, Spenta R. |
author_facet | Dhar, Avinash Mandal, Gautam Wadia, Spenta R. |
author_sort | Dhar, Avinash |
collection | CERN |
description | We propose a new formulation of the space-time interpretation of the c=1 matrix model. Our formulation uses the well-known leg-pole factor that relates the matrix model amplitudes to that of the 2-dimensional string theory, but includes fluctuations around the fermi vacuum on {\sl both sides} of the inverted harmonic oscillator potential of the double-scaled model, even when the fluctuations are small and confined entirely within the asymptotes in the phase plane. We argue that including fluctuations on both sides of the potential is essential for a consistent interpretation of the leg-pole transformed theory as a theory of space-time gravity. We reproduce the known results for the string theory tree level scattering amplitudes for flat space and linear dilaton background as a special case. We show that the generic case corresponds to more general space-time backgrounds. In particular, we identify the parameter corresponding to background metric perturbation in string theory (black hole mass) in terms of the matrix model variables. Possible implications of our work for a consistent nonperturbative definition of string theory as well as for quantized gravity and black-hole physics are discussed. |
id | cern-284509 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 1995 |
record_format | invenio |
spelling | cern-2845092023-03-14T18:58:19Zdoi:10.1016/0550-3213(95)00493-Chttp://cds.cern.ch/record/284509engDhar, AvinashMandal, GautamWadia, Spenta R.Discrete state moduli of string theory from c=1 matrix modelParticle Physics - TheoryWe propose a new formulation of the space-time interpretation of the c=1 matrix model. Our formulation uses the well-known leg-pole factor that relates the matrix model amplitudes to that of the 2-dimensional string theory, but includes fluctuations around the fermi vacuum on {\sl both sides} of the inverted harmonic oscillator potential of the double-scaled model, even when the fluctuations are small and confined entirely within the asymptotes in the phase plane. We argue that including fluctuations on both sides of the potential is essential for a consistent interpretation of the leg-pole transformed theory as a theory of space-time gravity. We reproduce the known results for the string theory tree level scattering amplitudes for flat space and linear dilaton background as a special case. We show that the generic case corresponds to more general space-time backgrounds. In particular, we identify the parameter corresponding to background metric perturbation in string theory (black hole mass) in terms of the matrix model variables. Possible implications of our work for a consistent nonperturbative definition of string theory as well as for quantized gravity and black-hole physics are discussed.We propose a new formulation of the space-time interpretation of the $c=1$ matrix model. Our formulation uses the well-known leg-pole factor that relates the matrix model amplitudes to that of the 2-dimensional string theory, but includes fluctuations around the fermi vacuum on {\sl both sides} of the inverted harmonic oscillator potential of the double-scaled model, even when the fluctuations are small and confined entirely within the asymptotes in the phase plane. We argue that including fluctuations on both sides of the potential is essential for a consistent interpretation of the leg-pole transformed theory as a theory of space-time gravity. We reproduce the known results for the string theory tree level scattering amplitudes for flat space and linear dilaton background as a special case. We show that the generic case corresponds to more general space-time backgrounds. In particular, we identify the parameter corresponding to background metric perturbation in string theory (black hole mass) in terms of the matrix model variables. Possible implications of our work for a consistent nonperturbative definition of string theory as well as for quantized gravity and black-hole physics are discussed.We propose a new formulation of the space-time interpretation of the c = 1 matrix model. Our formulation uses the well-known leg-pole factor that relates the matrix model amplitudes to that of the 2-dimensional string theory, but includes fluctuations around the Fermi vacuum on both sides of the inverted harmonic oscillator potential of the double-scaled model, even when the fluctuations are small and confined entirely within the asymptotes in the phase plane. We argue that including fluctuations on both sides of the potential is essential for a consistent interpretation of the leg-pole transformed theory as a theory of space-time gravity. We reproduce the known results for the string theory tree-level scattering amplitudes for flat space and linear dilaton background as a special case. We show that the generic case corresponds to more general space-time backgrounds. In particular, we identify the parameter corresponding to background metric perturbation in string theory (black-hole mass) in terms of the matrix model variables. Possible implications of our work for a consistent non-perturbative definition of string theory as well as for quantized gravity and black-hole physics are discussed.hep-th/9507041CERN-TH-95-186TIFR-TH-95-30CERN-TH-95-186TIFR-TH-95-30oai:cds.cern.ch:2845091995-07-07 |
spellingShingle | Particle Physics - Theory Dhar, Avinash Mandal, Gautam Wadia, Spenta R. Discrete state moduli of string theory from c=1 matrix model |
title | Discrete state moduli of string theory from c=1 matrix model |
title_full | Discrete state moduli of string theory from c=1 matrix model |
title_fullStr | Discrete state moduli of string theory from c=1 matrix model |
title_full_unstemmed | Discrete state moduli of string theory from c=1 matrix model |
title_short | Discrete state moduli of string theory from c=1 matrix model |
title_sort | discrete state moduli of string theory from c=1 matrix model |
topic | Particle Physics - Theory |
url | https://dx.doi.org/10.1016/0550-3213(95)00493-C http://cds.cern.ch/record/284509 |
work_keys_str_mv | AT dharavinash discretestatemoduliofstringtheoryfromc1matrixmodel AT mandalgautam discretestatemoduliofstringtheoryfromc1matrixmodel AT wadiaspentar discretestatemoduliofstringtheoryfromc1matrixmodel |