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From gap probabilities in random matrix theory to eigenvalue expansions (1509.07159v2)

Published 23 Sep 2015 in math-ph, math.MP, math.PR, math.SP, and nlin.SI

Abstract: We present a method to derive asymptotics of eigenvalues for trace-class integral operators $K:L2(J;d\lambda)\circlearrowleft$, acting on a single interval $J\subset\mathbb{R}$, which belong to the ring of integrable operators \cite{IIKS}. Our emphasis lies on the behavior of the spectrum ${\lambda_i(J)}{i=0}{\infty}$ of $K$ as $|J|\rightarrow\infty$ and $i$ is fixed. We show that this behavior is intimately linked to the analysis of the Fredholm determinant $\det(I-\gamma K)|{L2(J)}$ as $|J|\rightarrow\infty$ and $\gamma\uparrow 1$ in a Stokes type scaling regime. Concrete asymptotic formul\ae\, are obtained for the eigenvalues of Airy and Bessel kernels in random matrix theory.

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