On solvable models of type-IIB superstring in NS-NS and R-R plane wave backgrounds
We consider type-IIB string in the two plane-wave backgrounds which may be interpreted as special limits of the AdS3 × S3 supported by the NS-NS or R-R 3-form backgrounds. The NS-NS plane-wave string model is equivalent to a direct generalization of the Nappi-Witten model, with its spectrum being si...
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2002
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Acceso en línea: | https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_10298479_v6_n4_p455_Russo http://hdl.handle.net/20.500.12110/paper_10298479_v6_n4_p455_Russo |
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paper:paper_10298479_v6_n4_p455_Russo2023-06-08T16:00:28Z On solvable models of type-IIB superstring in NS-NS and R-R plane wave backgrounds AdS-CFT and dS-CFT Correspondence Conformal Field Models in String Theory Superstring Vacua We consider type-IIB string in the two plane-wave backgrounds which may be interpreted as special limits of the AdS3 × S3 supported by the NS-NS or R-R 3-form backgrounds. The NS-NS plane-wave string model is equivalent to a direct generalization of the Nappi-Witten model, with its spectrum being similar to that of strings in constant magnetic field. The R-R model can be solved in the light-cone gauge, where the Green-Schwarz world-sheet theory reduces to a system of free fields: 4 massive and 4 massless copies of bosons and fermions. We describe the string spectra of the two models and study the associated asymptotic density of states. We also discuss a more general class of exactly solvable plane-wave models with reduced or completely broken supersymmetry which are obtained by adding twists in two spatial 2-planes. © SISSA/ISAS 2002. 2002 https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_10298479_v6_n4_p455_Russo http://hdl.handle.net/20.500.12110/paper_10298479_v6_n4_p455_Russo |
institution |
Universidad de Buenos Aires |
institution_str |
I-28 |
repository_str |
R-134 |
collection |
Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA) |
topic |
AdS-CFT and dS-CFT Correspondence Conformal Field Models in String Theory Superstring Vacua |
spellingShingle |
AdS-CFT and dS-CFT Correspondence Conformal Field Models in String Theory Superstring Vacua On solvable models of type-IIB superstring in NS-NS and R-R plane wave backgrounds |
topic_facet |
AdS-CFT and dS-CFT Correspondence Conformal Field Models in String Theory Superstring Vacua |
description |
We consider type-IIB string in the two plane-wave backgrounds which may be interpreted as special limits of the AdS3 × S3 supported by the NS-NS or R-R 3-form backgrounds. The NS-NS plane-wave string model is equivalent to a direct generalization of the Nappi-Witten model, with its spectrum being similar to that of strings in constant magnetic field. The R-R model can be solved in the light-cone gauge, where the Green-Schwarz world-sheet theory reduces to a system of free fields: 4 massive and 4 massless copies of bosons and fermions. We describe the string spectra of the two models and study the associated asymptotic density of states. We also discuss a more general class of exactly solvable plane-wave models with reduced or completely broken supersymmetry which are obtained by adding twists in two spatial 2-planes. © SISSA/ISAS 2002. |
title |
On solvable models of type-IIB superstring in NS-NS and R-R plane wave backgrounds |
title_short |
On solvable models of type-IIB superstring in NS-NS and R-R plane wave backgrounds |
title_full |
On solvable models of type-IIB superstring in NS-NS and R-R plane wave backgrounds |
title_fullStr |
On solvable models of type-IIB superstring in NS-NS and R-R plane wave backgrounds |
title_full_unstemmed |
On solvable models of type-IIB superstring in NS-NS and R-R plane wave backgrounds |
title_sort |
on solvable models of type-iib superstring in ns-ns and r-r plane wave backgrounds |
publishDate |
2002 |
url |
https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_10298479_v6_n4_p455_Russo http://hdl.handle.net/20.500.12110/paper_10298479_v6_n4_p455_Russo |
_version_ |
1768541714920767488 |