String Field Theory as World-sheet UV Regulator
arXiv:1902.00263 · doi:10.1007/JHEP10(2019)119
Abstract
Even at tree level, the first quantized string theory suffers from apparent short distance singularities associated with collision of vertex operators that prevent us from straightforward numerical computation of various quantities. Examples include string theory S-matrix for generic external momenta and computation of the spectrum of string theory under a marginal deformation of the world-sheet theory. The former requires us to define the S-matrix via analytic continuation or as limits of contour integrals in complexified moduli space, while the latter requires us to use an ultraviolet cut-off at intermediate steps. In contrast, string field theory does not suffer from such divergences. In this paper we show how string field theory can be used to generate an explicit algorithm for computing tree level amplitudes in any string theory that does not suffer from any short distance divergence from integration over the world-sheet variables. We also use string field theory to compute second order mass shift of string states under a marginal deformation without having to use any cut-off at intermediate steps. We carry out the analysis in a broad class of string field theories, thereby making it manifest that the final results are independent of the extra data that go into the formulation of string field theory. We also comment on the generalization of this analysis to higher genus amplitudes.
LaTeX file, 72 pages, 10 page summary in section 1
References in corpus (8)
- Combinatorics and Topology of Kawai-Lewellen-Tye Relations
- Analytic Solutions for Marginal Deformations in Open String Field Theory
- Comments on Marginal Deformations in Open String Field Theory
- String Field Theory Solution for Any Open String Background
- Solutions from boundary condition changing operators in open string field theory
- Marginal deformations in string field theory
- NS-NS Sector of Closed Superstring Field Theory
- String Perturbation Theory Around Dynamically Shifted Vacuum
Cited by in corpus (25)
- Aspects of Scattering Amplitudes and Moduli Space Localization
- D-instantons, String Field Theory and Two Dimensional String Theory
- Fixing an Ambiguity in Two Dimensional String Theory Using String Field Theory
- Four Lectures on Analytic Solutions in Open String Field Theory
- Classical algebraic structures in string theory effective actions
- D-instanton Perturbation Theory
- Open-closed Hyperbolic String Vertices
- String Field Theory Solution for Any Open String Background. II
- Algebraic branch points at all loop orders from positive kinematics and wall crossing
- Unitarity Cuts of the Worldsheet
- Divergent to Complex Amplitudes in Two Dimensional String Theory
- The classical cosmological constant of open-closed string field theory
- Hyperbolic string tadpole
- Generalized ADHM equations from marginal deformations in open superstring field theory
- String Field Theory
- On-Shell Action for Type IIB Supergravity and Superstrings on
- Localization of effective actions in Heterotic String Field Theory
- Field theory expansions of string theory amplitudes
- Closed string deformations in open string field theory I: bosonic string
- Lorentzian contours for tree-level string amplitudes
- Perturbative path-integral of string field and the structure of the BV master equation
- Closed string deformations in open string field theory III: worldsheet localization
- Deriving on-shell open string field amplitudes without using Feynman rules
- Handle Operators in String Theory
- Symplectic structure in open string field theory III: Electric field