English

Multivariate analysis and Jacobi ensembles: largest eigenvalue, Tracy--Widom limits and rates of convergence

Statistics Theory 2009-01-21 v2 Probability Statistics Theory

Abstract

Let AA and BB be independent, central Wishart matrices in pp variables with common covariance and having mm and nn degrees of freedom, respectively. The distribution of the largest eigenvalue of (A+B)1B(A+B)^{-1}B has numerous applications in multivariate statistics, but is difficult to calculate exactly. Suppose that mm and nn grow in proportion to pp. We show that after centering and scaling, the distribution is approximated to second-order, O(p2/3)O(p^{-2/3}), by the Tracy--Widom law. The results are obtained for both complex and then real-valued data by using methods of random matrix theory to study the largest eigenvalue of the Jacobi unitary and orthogonal ensembles. Asymptotic approximations of Jacobi polynomials near the largest zero play a central role.

Keywords

Cite

@article{arxiv.0803.3408,
  title  = {Multivariate analysis and Jacobi ensembles: largest eigenvalue, Tracy--Widom limits and rates of convergence},
  author = {Iain M. Johnstone},
  journal= {arXiv preprint arXiv:0803.3408},
  year   = {2009}
}

Comments

Published in at http://dx.doi.org/10.1214/08-AOS605 the Annals of Statistics (http://www.imstat.org/aos/) by the Institute of Mathematical Statistics (http://www.imstat.org)

R2 v1 2026-06-21T10:23:59.191Z