Marchenko-Pastur law with relaxed independence conditions
Abstract
We prove the Marchenko-Pastur law for the eigenvalues of sample covariance matrices in two new situations where the data does not have independent coordinates. In the first scenario - the block-independent model - the coordinates of the data are partitioned into blocks in such a way that the entries in different blocks are independent, but the entries from the same block may be dependent. In the second scenario - the random tensor model - the data is the homogeneous random tensor of order , i.e. the coordinates of the data are all different products of variables chosen from a set of independent random variables. We show that Marchenko-Pastur law holds for the block-independent model as long as the size of the largest block is and for the random tensor model as long as . Our main technical tools are new concentration inequalities for quadratic forms in random variables with block-independent coordinates, and for random tensors.
Keywords
Cite
@article{arxiv.1912.12724,
title = {Marchenko-Pastur law with relaxed independence conditions},
author = {Jennifer Bryson and Roman Vershynin and Hongkai Zhao},
journal= {arXiv preprint arXiv:1912.12724},
year = {2021}
}
Comments
23 pages, 4 figures