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Path Integral on Star Graph

High Energy Physics - Theory 2012-05-11 v3 Mathematical Physics math.MP Quantum Physics

Abstract

In this paper we study path integral for a single spinless particle on a star graph with N edges, whose vertex is known to be described by U(N) family of boundary conditions. After carefully studying the free particle case, both at the critical and off-critical levels, we propose a new path integral formulation that correctly captures all the scale-invariant subfamily of boundary conditions realized at fixed points of boundary renormalization group flow. Our proposal is based on the folding trick, which maps a scalar-valued wave function on star graph to an N-component vector-valued wave function on half-line. All the parameters of scale-invariant subfamily of boundary conditions are encoded into the momentum independent weight factors, which appear to be associated with the two distinct path classes on half-line that form the cyclic group Z_2. We show that, when bulk interactions are edge-independent, these weight factors are generally given by an N-dimensional unitary representation of Z_2. Generalization to momentum dependent weight factors and applications to worldline formalism are briefly discussed.

Cite

@article{arxiv.1104.5481,
  title  = {Path Integral on Star Graph},
  author = {Satoshi Ohya},
  journal= {arXiv preprint arXiv:1104.5481},
  year   = {2012}
}

Comments

19 pages, 15 figures; typos corrected

R2 v1 2026-06-21T18:00:03.795Z