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Multiple D3-instantons and mock modular forms I

We study D3-instanton corrections to the hypermultiplet moduli space in type IIB string theory compactified on a Calabi-Yau threefold. In a previous work, consistency of D3-instantons with S-duality was established at first order in the instanton expansion, using the modular properties of the M5-bra...

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Autores principales: Alexandrov, Sergei, Banerjee, Sibasish, Manschot, Jan, Pioline, Boris
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1007/s00220-016-2799-0
http://cds.cern.ch/record/2154566
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author Alexandrov, Sergei
Banerjee, Sibasish
Manschot, Jan
Pioline, Boris
author_facet Alexandrov, Sergei
Banerjee, Sibasish
Manschot, Jan
Pioline, Boris
author_sort Alexandrov, Sergei
collection CERN
description We study D3-instanton corrections to the hypermultiplet moduli space in type IIB string theory compactified on a Calabi-Yau threefold. In a previous work, consistency of D3-instantons with S-duality was established at first order in the instanton expansion, using the modular properties of the M5-brane elliptic genus. We extend this analysis to the two-instanton level, where wall-crossing phenomena start playing a role. We focus on the contact potential, an analogue of the Kahler potential which must transform as a modular form under S-duality. We show that it can be expressed in terms of a suitable modification of the partition function of D4-D2-D0 BPS black holes, constructed out of the generating function of MSW invariants (the latter coincide with Donaldson-Thomas invariants in a particular chamber). Modular invariance of the contact potential then requires that, in case where the D3-brane wraps a reducible divisor, the generating function of MSW invariants must transform as a vector-valued mock modular form, with a specific modular completion built from the MSW invariants of the constituents. Physically, this gives a powerful constraint on the degeneracies of BPS black holes. Mathematically, our result gives a universal prediction for the modular properties of Donaldson-Thomas invariants of pure two-dimensional sheaves.
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spelling cern-21545662021-05-03T20:00:24Zdoi:10.1007/s00220-016-2799-0http://cds.cern.ch/record/2154566engAlexandrov, SergeiBanerjee, SibasishManschot, JanPioline, BorisMultiple D3-instantons and mock modular forms Imath.NTMathematical Physics and Mathematicsmath.MPmath.AGmath-phhep-thParticle Physics - TheoryWe study D3-instanton corrections to the hypermultiplet moduli space in type IIB string theory compactified on a Calabi-Yau threefold. In a previous work, consistency of D3-instantons with S-duality was established at first order in the instanton expansion, using the modular properties of the M5-brane elliptic genus. We extend this analysis to the two-instanton level, where wall-crossing phenomena start playing a role. We focus on the contact potential, an analogue of the Kahler potential which must transform as a modular form under S-duality. We show that it can be expressed in terms of a suitable modification of the partition function of D4-D2-D0 BPS black holes, constructed out of the generating function of MSW invariants (the latter coincide with Donaldson-Thomas invariants in a particular chamber). Modular invariance of the contact potential then requires that, in case where the D3-brane wraps a reducible divisor, the generating function of MSW invariants must transform as a vector-valued mock modular form, with a specific modular completion built from the MSW invariants of the constituents. Physically, this gives a powerful constraint on the degeneracies of BPS black holes. Mathematically, our result gives a universal prediction for the modular properties of Donaldson-Thomas invariants of pure two-dimensional sheaves.We study D3-instanton corrections to the hypermultiplet moduli space in type IIB string theory compactified on a Calabi–Yau threefold. In a previous work, consistency of D3-instantons with S-duality was established at first order in the instanton expansion, using the modular properties of the M5-brane elliptic genus. We extend this analysis to the two-instanton level, where wall-crossing phenomena start playing a role. We focus on the contact potential, an analogue of the Kähler potential which must transform as a modular form under S-duality. We show that it can be expressed in terms of a suitable modification of the partition function of D4-D2-D0 BPS black holes, constructed out of the generating function of MSW invariants (the latter coincide with Donaldson–Thomas invariants in a particular chamber). Modular invariance of the contact potential then requires that, in the case where the D3-brane wraps a reducible divisor, the generating function of MSW invariants must transform as a vector-valued mock modular form, with a specific modular completion built from the MSW invariants of the constituents. Physically, this gives a powerful constraint on the degeneracies of BPS black holes. Mathematically, our result gives a universal prediction for the modular properties of Donaldson–Thomas invariants of pure two-dimensional sheaves.L2C:16-056IPHT-T16-037CERN-TH-2016-121TCDMATH-16-08arXiv:1605.05945oai:cds.cern.ch:21545662016-05-19
spellingShingle math.NT
Mathematical Physics and Mathematics
math.MP
math.AG
math-ph
hep-th
Particle Physics - Theory
Alexandrov, Sergei
Banerjee, Sibasish
Manschot, Jan
Pioline, Boris
Multiple D3-instantons and mock modular forms I
title Multiple D3-instantons and mock modular forms I
title_full Multiple D3-instantons and mock modular forms I
title_fullStr Multiple D3-instantons and mock modular forms I
title_full_unstemmed Multiple D3-instantons and mock modular forms I
title_short Multiple D3-instantons and mock modular forms I
title_sort multiple d3-instantons and mock modular forms i
topic math.NT
Mathematical Physics and Mathematics
math.MP
math.AG
math-ph
hep-th
Particle Physics - Theory
url https://dx.doi.org/10.1007/s00220-016-2799-0
http://cds.cern.ch/record/2154566
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AT manschotjan multipled3instantonsandmockmodularformsi
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