paper

Modular Forms and -covariance of type IIB superstring theory

arXiv:1904.13394 · doi:10.1007/JHEP06(2019)087

Abstract

The local higher-derivative interactions that enter into the low-energy expansion of the effective action of type IIB superstring theory with constant complex modulus generally violate the R-symmetry of IIB supergravity by units. These interactions have coefficients that transform as non-holomorphic modular forms under transformations with holomorphic and anti-holomorphic weights , where . In this paper -covariance and supersymmetry are used to determine first-order differential equations on moduli space that relate the modular form coefficients of classes of BPS-protected maximal -violating interactions that arise at low orders in the low-energy expansion. These are the moduli-dependent coefficients of BPS interactions of the form in linearised approximation, where is the product of fields that has dimension with , and , or . These first-order equations imply that the coefficients satisfy -covariant Laplace eigenvalue equations on moduli space with solutions that contain information concerning perturbative and non-perturbative contributions to superstring amplitudes. For and there are two independent modular forms, one of which has a vanishing tree-level contribution. The analysis of super-amplitudes for -violating processes involving arbitrary numbers of external fluctuations of the complex modulus leads to a diagrammatic derivation of the first-order differential relations and Laplace equations satisfied by the coefficient modular forms. Combining this with a -covariant soft axio-dilaton limit that relates amplitudes with different values of determines most of the modular invariant coefficients, leaving a single undetermined constant.

58 pages, 4 figures. v2: typos corrected, JHEP version

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