Excited String States and D-branes from Infinite Width Neural Networks
Abstract
We explore recent proposal to represent worldsheet string path integrals by integrating over parameters of a wide random-feature neural network whose output is identified with the embedding field . In this paper we extend it focusing on scattering with excited states insertions and for worldsheets with boundaries introducing fixed-feature Gaussian normal-ordering prescription for derivative composites (removing the neural contact term at finite width), and propose realization of mixed Neumann/Dirichlet boundary conditions interpreted as a neural D-brane. As concrete outputs, we derive the sphere four-point integrand with a single insertion and the disk four-tachyon amplitude on a D-brane, recovering the expected derivative prefactors, boundary exponents, and momentum-conservation limits after renormalization.
Keywords
Cite
@article{arxiv.2602.10214,
title = {Excited String States and D-branes from Infinite Width Neural Networks},
author = {Dmitry S. Ageev and Yulia A. Ageeva},
journal= {arXiv preprint arXiv:2602.10214},
year = {2026}
}
Comments
18 pages, comments are welcome