English

A family of diameter-based eigenvalue bounds for quantum graphs

Spectral Theory 2019-10-04 v2

Abstract

We establish a sharp lower bound on the first non-trivial eigenvalue of the Laplacian on a metric graph equipped with natural (i.e., continuity and Kirchhoff) vertex conditions in terms of the diameter and the total length of the graph. This extends a result of, and resolves an open problem from, [J. B. Kennedy, P. Kurasov, G. Malenov\'a and D. Mugnolo, Ann. Henri Poincar\'e 17 (2016), 2439--2473, Section 7.2], and also complements an analogous lower bound for the corresponding eigenvalue of the combinatorial Laplacian on a discrete graph. We also give a family of corresponding lower bounds for the higher eigenvalues under the assumption that the total length of the graph is sufficiently large compared with its diameter. These inequalities are sharp in the case of trees.

Keywords

Cite

@article{arxiv.1807.08185,
  title  = {A family of diameter-based eigenvalue bounds for quantum graphs},
  author = {J. B. Kennedy},
  journal= {arXiv preprint arXiv:1807.08185},
  year   = {2019}
}

Comments

Substantial revision of v1. The main result, originally for the first eigenvalue, has been generalised to the higher ones. The title has been changed and the proofs substantially reorganised to reflect the new result, and a section containing concluding remarks has been added

R2 v1 2026-06-23T03:09:34.824Z