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Universal behavior of the corners of Orbital Beta Processes

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arxiv 1807.06134 v2 pith:WE6PVQGP submitted 2018-07-16 math.PR math-phmath.CAmath.MP

classification math.PRmath-phmath.CAmath.MP
keywords orbitalbetaprocessesbehaviorcornerseigenvaluesensemblehermitian
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abstract

There is a unique unitarily-invariant ensemble of $N\times N$ Hermitian matrices with a fixed set of real eigenvalues $a_1 > \dots > a_N$. The joint eigenvalue distribution of the $(N - 1)$ top-left principal submatrices of a random matrix from this ensemble is called the orbital unitary process. There are analogous matrix ensembles of symmetric and quaternionic Hermitian matrices that lead to the orbital orthogonal and symplectic processes, respectively. By extrapolation, on the dimension of the base field, of the explicit density formulas, we define the orbital beta processes. We prove the universal behavior of the virtual eigenvalues of the smallest $m$ principal submatrices, when $m$ is independent of $N$ and in such a way that the rescaled empirical measures converge weakly. The limiting object is the Gaussian beta corners process. As a byproduct of our approach, we prove a theorem on the asymptotics of multivariate Bessel functions.

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  1. Turning point processes in plane partitions with periodic weights of arbitrary period

    math.PR 2019-08 conditional novelty 7.0 of 10

    Random plane partitions with k-periodic weights develop up to k turning points near the vertical boundary, with correlated GUE-corners processes at each point and rational-slope facets between them.

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