On the asymptotic spectral distribution of random matrices : closed form solutions using free independence
The spectral distribution function of random matrices is an information-carrying object widely studied within Random matrix theory. In this thesis we combine the results of the theory together with the idea of free independence introduced by Voiculescu (1985). Important theoretical part of the thesi...
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ndltd-UPSALLA1-oai-DiVA.org-lnu-581812020-05-14T03:35:55ZOn the asymptotic spectral distribution of random matrices : closed form solutions using free independenceengPielaszkiewicz, Jolanta MariaLinköping UniversityLinköping : Department of Mathematics, Linköping University2013Spectral distributionR-transformStieltjes transformFree probabilityFreenessAsymptotic freenessProbability Theory and StatisticsSannolikhetsteori och statistikThe spectral distribution function of random matrices is an information-carrying object widely studied within Random matrix theory. In this thesis we combine the results of the theory together with the idea of free independence introduced by Voiculescu (1985). Important theoretical part of the thesis consists of the introduction to Free probability theory, which justifies use of asymptotic freeness with respect to particular matrices as well as the use of Stieltjes and R-transform. Both transforms are presented together with their properties. The aim of thesis is to point out characterizations of those classes of the matrices, which have closed form expressions for the asymptotic spectral distribution function. We consider all matrices which can be decomposed to the sum of asymptotically free independent summands. In particular, explicit calculations are performed in order to illustrate the use of asymptotic free independence to obtain the asymptotic spectral distribution for a matrix Q and generalize Marcenko and Pastur (1967) theorem. The matrix Q is defined as <img src="http://www.diva-portal.org/cgi-bin/mimetex.cgi?Q%20=%20%5Cfrac%7B1%7Dn%20X_1X%5E%5Cprime_1%20+%20%5Ccdot%5Ccdot%5Ccdot%20+%20%5Cfrac%7B1%7Dn%20X_kX%5E%5Cprime_k," /> where Xi is p × n matrix following a matrix normal distribution, Xi ~ Np,n(0, \sigma^2I, I). Finally, theorems pointing out classes of matrices Q which lead to closed formula for the asymptotic spectral distribution will be presented. Particularly, results for matrices with inverse Stieltjes transform, with respect to the composition, given by a ratio of polynomials of 1st and 2nd degree, are given. Licentiate thesis, monographinfo:eu-repo/semantics/masterThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-58181urn:isbn:9789175195964Linköping studies in science and technology, 0280-7971 ; 1597application/pdfinfo:eu-repo/semantics/openAccess |
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English |
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Others
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Spectral distribution R-transform Stieltjes transform Free probability Freeness Asymptotic freeness Probability Theory and Statistics Sannolikhetsteori och statistik |
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Spectral distribution R-transform Stieltjes transform Free probability Freeness Asymptotic freeness Probability Theory and Statistics Sannolikhetsteori och statistik Pielaszkiewicz, Jolanta Maria On the asymptotic spectral distribution of random matrices : closed form solutions using free independence |
description |
The spectral distribution function of random matrices is an information-carrying object widely studied within Random matrix theory. In this thesis we combine the results of the theory together with the idea of free independence introduced by Voiculescu (1985). Important theoretical part of the thesis consists of the introduction to Free probability theory, which justifies use of asymptotic freeness with respect to particular matrices as well as the use of Stieltjes and R-transform. Both transforms are presented together with their properties. The aim of thesis is to point out characterizations of those classes of the matrices, which have closed form expressions for the asymptotic spectral distribution function. We consider all matrices which can be decomposed to the sum of asymptotically free independent summands. In particular, explicit calculations are performed in order to illustrate the use of asymptotic free independence to obtain the asymptotic spectral distribution for a matrix Q and generalize Marcenko and Pastur (1967) theorem. The matrix Q is defined as <img src="http://www.diva-portal.org/cgi-bin/mimetex.cgi?Q%20=%20%5Cfrac%7B1%7Dn%20X_1X%5E%5Cprime_1%20+%20%5Ccdot%5Ccdot%5Ccdot%20+%20%5Cfrac%7B1%7Dn%20X_kX%5E%5Cprime_k," /> where Xi is p × n matrix following a matrix normal distribution, Xi ~ Np,n(0, \sigma^2I, I). Finally, theorems pointing out classes of matrices Q which lead to closed formula for the asymptotic spectral distribution will be presented. Particularly, results for matrices with inverse Stieltjes transform, with respect to the composition, given by a ratio of polynomials of 1st and 2nd degree, are given. |
author |
Pielaszkiewicz, Jolanta Maria |
author_facet |
Pielaszkiewicz, Jolanta Maria |
author_sort |
Pielaszkiewicz, Jolanta Maria |
title |
On the asymptotic spectral distribution of random matrices : closed form solutions using free independence |
title_short |
On the asymptotic spectral distribution of random matrices : closed form solutions using free independence |
title_full |
On the asymptotic spectral distribution of random matrices : closed form solutions using free independence |
title_fullStr |
On the asymptotic spectral distribution of random matrices : closed form solutions using free independence |
title_full_unstemmed |
On the asymptotic spectral distribution of random matrices : closed form solutions using free independence |
title_sort |
on the asymptotic spectral distribution of random matrices : closed form solutions using free independence |
publisher |
Linköping University |
publishDate |
2013 |
url |
http://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-58181 http://nbn-resolving.de/urn:isbn:9789175195964 |
work_keys_str_mv |
AT pielaszkiewiczjolantamaria ontheasymptoticspectraldistributionofrandommatricesclosedformsolutionsusingfreeindependence |
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1719314771828801536 |