English

Mean eigenvector self-overlap in the real and complex elliptic Ginibre ensembles at strong and weak non-Hermiticity

Mathematical Physics 2024-03-22 v2 math.MP

Abstract

We study the mean diagonal overlap of left and right eigenvectors associated with complex eigenvalues in N×NN\times N non-Hermitian random Gaussian matrices. In well known works by Chalker and Mehlig the expectation of this (self-)overlap was computed for the complex Ginibre ensemble as NN\to \infty. In the present work, we consider the same quantity in the real and complex elliptic Ginibre ensembles characterized by correlations between off-diagonal entries controlled by a parameter τ[0,1]\tau\in[0,1], with τ=1\tau=1 corresponding to the Hermitian limit. We derive exact expressions for the mean diagonal overlap in both ensembles at any finite NN, for any eigenvalue off the real axis. We further investigate several scaling regimes as NN\rightarrow \infty, both in the limit of strong non-Hermiticity keeping a fixed τ[0,1)\tau\in[0,1) and in the weak non-Hermiticity limit, with τ\tau approaching unity in such a way that N(1τ)N(1-\tau) remains finite.

Keywords

Cite

@article{arxiv.2402.09296,
  title  = {Mean eigenvector self-overlap in the real and complex elliptic Ginibre ensembles at strong and weak non-Hermiticity},
  author = {Mark J. Crumpton and Yan V. Fyodorov and Tim R. Würfel},
  journal= {arXiv preprint arXiv:2402.09296},
  year   = {2024}
}

Comments

29 pages, 6 figures