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Multiloop Superstring Amplitudes from Non-Minimal Pure Spinor Formalism

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Using the non-minimal version of the pure spinor formalism, manifestly super-Poincare covariant superstring scattering amplitudes can be computed as in topological string theory without the need of picture-changing operators. The only subtlety comes from regularizing the functional integral over the pure spinor ghosts. In this paper, it is shown how to regularize this functional integral in a BRST-invariant manner, allowing the computation of arbitrary multiloop amplitudes. The regularization method simplifies for scattering amplitudes which contribute to ten-dimensional F-terms, i.e. terms in the ten-dimensional superspace action which do not involve integration over the maximum number of $\theta$'s.

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representative citing papers

On the $AdS_5\times S^5$ Solution of Superstring Field Theory

hep-th · 2025-07-17 · conditional · novelty 6.0

The AdS5 x S5 background of type IIB superstring field theory is constructed explicitly to third order in the large-radius expansion, with maximal super-isometry verified to second order and the massless RR axion identified among linearized fluctuations.

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  • On the $AdS_5\times S^5$ Solution of Superstring Field Theory hep-th · 2025-07-17 · conditional · none · ref 18 · internal anchor

    The AdS5 x S5 background of type IIB superstring field theory is constructed explicitly to third order in the large-radius expansion, with maximal super-isometry verified to second order and the massless RR axion identified among linearized fluctuations.