English

Inverse problems for discrete heat equations and random walks for a class of graphs

Spectral Theory 2023-01-05 v2 Probability

Abstract

We study the inverse problem of determining a finite weighted graph (X,E)(X,E) from the source-to-solution map on a vertex subset BXB\subset X for heat equations on graphs, where the time variable can be either discrete or continuous. We prove that this problem is equivalent to the discrete version of the inverse interior spectral problem, provided that there does not exist a nonzero eigenfunction of the weighted graph Laplacian vanishing identically on BB. In particular, we consider inverse problems for discrete-time random walks on finite graphs. We show that under a novel geometric condition (called the Two-Points Condition), the graph structure and the transition matrix of the random walk can be uniquely recovered from the distributions of the first passing times on BB, or from the observation on BB of one realization of the random walk.

Keywords

Cite

@article{arxiv.2107.00494,
  title  = {Inverse problems for discrete heat equations and random walks for a class of graphs},
  author = {Emilia Blåsten and Hiroshi Isozaki and Matti Lassas and Jinpeng Lu},
  journal= {arXiv preprint arXiv:2107.00494},
  year   = {2023}
}

Comments

to appear in SIAM J. Discrete Math