The suitably rescaled max |Z_j|^2 of eigenvalues of the product of k_n complex Ginibre matrices converges weakly to Phi_alpha for finite positive alpha = lim n/k_n, to Gumbel for alpha infinite, and to normal for alpha zero, with exact convergence rates in each regime.
On the asymptotic spectrum of products of independent random matrices
2 Pith papers cite this work. Polarity classification is still indexing.
abstract
We consider products of independent random matrices with independent entries. The limit distribution of the expected empirical distribution of eigenvalues of such products is computed. Let $X^{(\nu)}_{jk},{}1\le j,r\le n$, $\nu=1,...,m$ be mutually independent complex random variables with $\E X^{(\nu)}_{jk}=0$ and $\E {|X^{(\nu)}_{jk}|}^2=1$. Let $\mathbf X^{(\nu)}$ denote an $n\times n$ matrix with entries $[\mathbf X^{(\nu)}]_{jk}=\frac1{\sqrt{n}}X^{(\nu)}_{jk}$, for $1\le j,k\le n$. Denote by $\lambda_1,...,\lambda_n$ the eigenvalues of the random matrix $\mathbf W:= \prod_{\nu=1}^m\mathbf X^{(\nu)}$ and define its empirical spectral distribution by $$ \mathcal F_n(x,y)=\frac1n\sum_{k=1}^n\mathbb I\{\re{\lambda_k}\le x,\im{\lambda_k\le y}\}, $$ where $\mathbb I\{B\}$ denotes the indicator of an event $B$. We prove that the expected spectral distribution $F_n^{(m)}(x,y)=\E \mathcal F_n^{(m)}(x,y)$ converges to the distribution function $G(x,y)$ corresponding to the $m$-th power of the uniform distribution on the unit disc in the plane $\mathbb R^2$.
fields
math.PR 2verdicts
UNVERDICTED 2representative citing papers
The scaled spectral radius of products of k_n complex Ginibre n-by-n matrices converges weakly to a continuous family Phi_alpha of limiting distributions that interpolates between the standard normal (alpha=0) and Gumbel (alpha=infty) laws, with exact convergence rates.
citing papers explorer
-
Precise convergence rate of spectral radius of product of complex Ginibre
The suitably rescaled max |Z_j|^2 of eigenvalues of the product of k_n complex Ginibre matrices converges weakly to Phi_alpha for finite positive alpha = lim n/k_n, to Gumbel for alpha infinite, and to normal for alpha zero, with exact convergence rates in each regime.
-
From Gaussian to Gumbel: extreme eigenvalues of complex Ginibre products with exact rates
The scaled spectral radius of products of k_n complex Ginibre n-by-n matrices converges weakly to a continuous family Phi_alpha of limiting distributions that interpolates between the standard normal (alpha=0) and Gumbel (alpha=infty) laws, with exact convergence rates.