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Basis decompositions of genus-one string integrals

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arxiv 2309.15836 v2 pith:6ERW3K2C submitted 2023-09-27 hep-th

classification hep-th
keywords basisgenus-onestringamplitudesintegralskronecker-eisensteinserieschain
verification ladder T0 review T1 audit T2 compute T3 formal
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One-loop scattering amplitudes in string theories involve configuration-space integrals over genus-one surfaces with coefficients of Kronecker-Eisenstein series in the integrand. A conjectural genus-one basis of integrands under Fay identities and integration by parts was recently constructed out of chains of Kronecker-Eisenstein series. In this work, we decompose a variety of more general genus-one integrands into the conjectural chain basis. The explicit form of the expansion coefficients is worked out for infinite families of cases where the Kronecker-Eisenstein series form cycles. Our results can be used to simplify multiparticle amplitudes in supersymmetric, heterotic and bosonic string theories and to investigate loop-level echoes of the field-theory double-copy structures of string tree-level amplitudes. The multitude of basis reductions in this work strongly validate the recently proposed chain basis and stimulate mathematical follow-up studies of more general configuration-space integrals with additional marked points or at higher genus.

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  1. On one-loop amplitudes in gauge theories

    hep-th 2024-12 conditional novelty 6.0 of 10

    A universal expansion expresses one-loop n-gluon amplitudes in general gauge theories as scalar-loop integrands dressed by matter-dependent gauge-invariant traces.

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