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Rankin-Selberg methods for closed string amplitudes

After integrating over supermoduli and vertex operator positions, scattering amplitudes in superstring theory at genus $h\leq 3$ are reduced to an integral of a Siegel modular function of degree $h$ on a fundamental domain of the Siegel upper half plane. A direct computation is in general unwieldy,...

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Autor principal: Pioline, Boris
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1090/pspum/088/01457
http://cds.cern.ch/record/1643591
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author Pioline, Boris
author_facet Pioline, Boris
author_sort Pioline, Boris
collection CERN
description After integrating over supermoduli and vertex operator positions, scattering amplitudes in superstring theory at genus $h\leq 3$ are reduced to an integral of a Siegel modular function of degree $h$ on a fundamental domain of the Siegel upper half plane. A direct computation is in general unwieldy, but becomes feasible if the integrand can be expressed as a sum over images under a suitable subgroup of the Siegel modular group: if so, the integration domain can be extended to a simpler domain at the expense of keeping a single term in each orbit -- a technique known as the Rankin-Selberg method. Motivated by applications to BPS-saturated amplitudes, Angelantonj, Florakis and I have applied this technique to one-loop modular integrals where the integrand is the product of a Siegel-Narain theta function times a weakly, almost holomorphic modular form. I survey our main results, and take some steps in extending this method to genus greater than one.
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spelling cern-16435912023-03-14T17:42:58Zdoi:10.1090/pspum/088/01457http://cds.cern.ch/record/1643591engPioline, BorisRankin-Selberg methods for closed string amplitudeshep-thParticle Physics - TheoryAfter integrating over supermoduli and vertex operator positions, scattering amplitudes in superstring theory at genus $h\leq 3$ are reduced to an integral of a Siegel modular function of degree $h$ on a fundamental domain of the Siegel upper half plane. A direct computation is in general unwieldy, but becomes feasible if the integrand can be expressed as a sum over images under a suitable subgroup of the Siegel modular group: if so, the integration domain can be extended to a simpler domain at the expense of keeping a single term in each orbit -- a technique known as the Rankin-Selberg method. Motivated by applications to BPS-saturated amplitudes, Angelantonj, Florakis and I have applied this technique to one-loop modular integrals where the integrand is the product of a Siegel-Narain theta function times a weakly, almost holomorphic modular form. I survey our main results, and take some steps in extending this method to genus greater than one.arXiv:1401.4265CERN-PH-TH-2014-007oai:cds.cern.ch:16435912014-01-17
spellingShingle hep-th
Particle Physics - Theory
Pioline, Boris
Rankin-Selberg methods for closed string amplitudes
title Rankin-Selberg methods for closed string amplitudes
title_full Rankin-Selberg methods for closed string amplitudes
title_fullStr Rankin-Selberg methods for closed string amplitudes
title_full_unstemmed Rankin-Selberg methods for closed string amplitudes
title_short Rankin-Selberg methods for closed string amplitudes
title_sort rankin-selberg methods for closed string amplitudes
topic hep-th
Particle Physics - Theory
url https://dx.doi.org/10.1090/pspum/088/01457
http://cds.cern.ch/record/1643591
work_keys_str_mv AT piolineboris rankinselbergmethodsforclosedstringamplitudes