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Refined Partition Functions for Open Superstrings with 4, 8 and 16 Supercharges

We analyse the perturbative massive open string spectrum of even dimensional superstring compactifications with four, eight and sixteen supercharges. In each of such cases, we focus on universal states that exist independently on the internal geometry and other compatification details. We analytical...

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Autores principales: Lüst, Dieter, Mekareeya, Noppadol, Schlotterer, Oliver, Thomson, Andrew
Lenguaje:eng
Publicado: 2012
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nuclphysb.2013.08.003
http://cds.cern.ch/record/1492857
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author Lüst, Dieter
Mekareeya, Noppadol
Schlotterer, Oliver
Thomson, Andrew
author_facet Lüst, Dieter
Mekareeya, Noppadol
Schlotterer, Oliver
Thomson, Andrew
author_sort Lüst, Dieter
collection CERN
description We analyse the perturbative massive open string spectrum of even dimensional superstring compactifications with four, eight and sixteen supercharges. In each of such cases, we focus on universal states that exist independently on the internal geometry and other compatification details. We analytically compute refined partition functions that count these states at each mass level. Such refined partition functions are written in a super-Poincare covariant form, providing information on how supermultiplets transform under the little group and the R symmetry. Various asymptotic limits of the partition functions and their associated quantities, such as the leading and subleading Regge trajectories, are studied empirically and analytically. In the phenomenologically relevant case of four supercharges, the partition function can be cast into the most compact form and the asymptotic formula in the large spin limit is derived explicitly.
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spelling cern-14928572023-10-20T02:29:48Zdoi:10.1016/j.nuclphysb.2013.08.003http://cds.cern.ch/record/1492857engLüst, DieterMekareeya, NoppadolSchlotterer, OliverThomson, AndrewRefined Partition Functions for Open Superstrings with 4, 8 and 16 SuperchargesParticle Physics - TheoryWe analyse the perturbative massive open string spectrum of even dimensional superstring compactifications with four, eight and sixteen supercharges. In each of such cases, we focus on universal states that exist independently on the internal geometry and other compatification details. We analytically compute refined partition functions that count these states at each mass level. Such refined partition functions are written in a super-Poincare covariant form, providing information on how supermultiplets transform under the little group and the R symmetry. Various asymptotic limits of the partition functions and their associated quantities, such as the leading and subleading Regge trajectories, are studied empirically and analytically. In the phenomenologically relevant case of four supercharges, the partition function can be cast into the most compact form and the asymptotic formula in the large spin limit is derived explicitly.We analyze the perturbative massive open string spectrum of even-dimensional superstring compactifications with four, eight and sixteen supercharges. In each of such cases, we focus on universal states that exist independently on the internal geometry and other compatification details. We analytically compute refined partition functions that count these states at each mass level. Such refined partition functions are written in a super-Poincaré covariant form, providing information on how supermultiplets transform under the little group and the R symmetry. Various asymptotic limits of the partition functions and their associated quantities, such as the leading and subleading Regge trajectories, are studied empirically and analytically. In the phenomenologically relevant case of four supercharges, the partition function can be cast into the most compact form and the asymptotic formula in the large spin limit is derived explicitly.We analyse the perturbative massive open string spectrum of even dimensional superstring compactifications with four, eight and sixteen supercharges. In each of such cases, we focus on universal states that exist independently on the internal geometry and other compatification details. We analytically compute refined partition functions that count these states at each mass level. Such refined partition functions are written in a super-Poincare covariant form, providing information on how supermultiplets transform under the little group and the R symmetry. Various asymptotic limits of the partition functions and their associated quantities, such as the leading and subleading Regge trajectories, are studied empirically and analytically. In the phenomenologically relevant case of four supercharges, the partition function can be cast into the most compact form and the asymptotic formula in the large spin limit is derived explicitly.arXiv:1211.1018LMU-ASC-77-12MPP-2012-141CERN-PH-TH-2012-294AEI-2012-191IMPERIAL-TP-12-AT-01LMU-ASC 77-12MPP-2012-141CERN-PH-TH-2012-294AEI-2012-191IMPERIAL-TP-12-AT-01oai:cds.cern.ch:14928572012-11-07
spellingShingle Particle Physics - Theory
Lüst, Dieter
Mekareeya, Noppadol
Schlotterer, Oliver
Thomson, Andrew
Refined Partition Functions for Open Superstrings with 4, 8 and 16 Supercharges
title Refined Partition Functions for Open Superstrings with 4, 8 and 16 Supercharges
title_full Refined Partition Functions for Open Superstrings with 4, 8 and 16 Supercharges
title_fullStr Refined Partition Functions for Open Superstrings with 4, 8 and 16 Supercharges
title_full_unstemmed Refined Partition Functions for Open Superstrings with 4, 8 and 16 Supercharges
title_short Refined Partition Functions for Open Superstrings with 4, 8 and 16 Supercharges
title_sort refined partition functions for open superstrings with 4, 8 and 16 supercharges
topic Particle Physics - Theory
url https://dx.doi.org/10.1016/j.nuclphysb.2013.08.003
http://cds.cern.ch/record/1492857
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AT schlottereroliver refinedpartitionfunctionsforopensuperstringswith48and16supercharges
AT thomsonandrew refinedpartitionfunctionsforopensuperstringswith48and16supercharges