English

Towards Hamiltonian Formalism for String Field Theory and Nonlocality

High Energy Physics - Theory 2025-09-18 v3

Abstract

String field theories exhibit exponential suppression of interactions among the component fields at high energies due to infinite-derivative factors such as e2/2e^{\ell^2 \Box / 2} in the vertices. This nonlocality has hindered the development of a consistent Hamiltonian formalism, leading some to question whether such a formalism is even viable. To address this challenge, we introduce a toy model inspired by string field theory and construct its Hamiltonian formalism by demanding that it reproduce all correlation functions derived from the path-integral formalism. Within this framework, we demonstrate for this toy model that physical-state constraints can be imposed to eliminate negative-norm states, while zero-norm states decouple from the physical state space. This approach provides a novel perspective on the nonlocality inherent in string field theories.

Keywords

Cite

@article{arxiv.2412.02577,
  title  = {Towards Hamiltonian Formalism for String Field Theory and Nonlocality},
  author = {Chih-Hao Chang and Pei-Ming Ho and I-Kwan Lee and Wei-Hsiang Shao},
  journal= {arXiv preprint arXiv:2412.02577},
  year   = {2025}
}

Comments

66 pages, 1 figure; v2: minor corrections, reference added; v3: published version with additional clarifications on the model considered and the analytic continuation procedure