Bessel Processes, Schramm–Loewner Evolution, and the Dyson Model

Nonfiction, Science & Nature, Science, Physics, Mathematical Physics, Mathematics, Statistics
Cover of the book Bessel Processes, Schramm–Loewner Evolution, and the Dyson Model by Makoto Katori, Springer Singapore
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Makoto Katori ISBN: 9789811002755
Publisher: Springer Singapore Publication: February 8, 2016
Imprint: Springer Language: English
Author: Makoto Katori
ISBN: 9789811002755
Publisher: Springer Singapore
Publication: February 8, 2016
Imprint: Springer
Language: English

The purpose of this book is to introduce two recent topics in mathematical physics and probability theory: the Schramm–Loewner evolution (SLE) and interacting particle systems related to random matrix theory. A typical example of the latter systems is Dyson's Brownian motion (BM) model. The SLE and Dyson's BM model may be considered as "children" of the Bessel process with parameter D, BES(D), and the SLE and Dyson's BM model as "grandchildren" of BM. In Chap. 1 the parenthood of BM in diffusion processes is clarified and BES(D) is defined for any D ≥ 1. Dependence of the BES(D) path on its initial value is represented by the Bessel flow. In Chap. 2 SLE is introduced as a complexification of BES(D). Rich mathematics and physics involved in SLE are due to the nontrivial dependence of the Bessel flow on D. From a result for the Bessel flow, Cardy's formula in Carleson's form is derived for SLE. In Chap. 3 Dyson's BM model with parameter β is introduced as a multivariate extension of BES(D) with the relation D = β + 1. The book concentrates on the case where β = 2 and calls this case simply the Dyson model.

The Dyson model inherits the two aspects of BES(3); hence it has very strong solvability. That is, the process is proved to be determinantal in the sense that all spatio-temporal correlation functions are given by determinants, and all of them are controlled by a single function called the correlation kernel. From the determinantal structure of the Dyson model, the Tracy–Widom distribution is derived. 

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

The purpose of this book is to introduce two recent topics in mathematical physics and probability theory: the Schramm–Loewner evolution (SLE) and interacting particle systems related to random matrix theory. A typical example of the latter systems is Dyson's Brownian motion (BM) model. The SLE and Dyson's BM model may be considered as "children" of the Bessel process with parameter D, BES(D), and the SLE and Dyson's BM model as "grandchildren" of BM. In Chap. 1 the parenthood of BM in diffusion processes is clarified and BES(D) is defined for any D ≥ 1. Dependence of the BES(D) path on its initial value is represented by the Bessel flow. In Chap. 2 SLE is introduced as a complexification of BES(D). Rich mathematics and physics involved in SLE are due to the nontrivial dependence of the Bessel flow on D. From a result for the Bessel flow, Cardy's formula in Carleson's form is derived for SLE. In Chap. 3 Dyson's BM model with parameter β is introduced as a multivariate extension of BES(D) with the relation D = β + 1. The book concentrates on the case where β = 2 and calls this case simply the Dyson model.

The Dyson model inherits the two aspects of BES(3); hence it has very strong solvability. That is, the process is proved to be determinantal in the sense that all spatio-temporal correlation functions are given by determinants, and all of them are controlled by a single function called the correlation kernel. From the determinantal structure of the Dyson model, the Tracy–Widom distribution is derived. 

More books from Springer Singapore

Cover of the book Emiratization in the UAE Labor Market by Makoto Katori
Cover of the book Marine Pollution and Microbial Remediation by Makoto Katori
Cover of the book Satellite Image Analysis: Clustering and Classification by Makoto Katori
Cover of the book Computer Communication, Networking and Internet Security by Makoto Katori
Cover of the book Catalytic and Process Study of the Selective Hydrogenation of Acetylene and 1,3-Butadiene by Makoto Katori
Cover of the book Characterizing Interdependencies of Multiple Time Series by Makoto Katori
Cover of the book Teaching, Learning, and Enacting of Self-Study Methodology by Makoto Katori
Cover of the book Microwave Sleep Apnoea Monitoring by Makoto Katori
Cover of the book Optically Active Polymers by Makoto Katori
Cover of the book New Ecology for Education — Communication X Learning by Makoto Katori
Cover of the book X-ray Studies of the Central Engine in Active Galactic Nuclei with Suzaku by Makoto Katori
Cover of the book Digital Signal Processing with Matlab Examples, Volume 3 by Makoto Katori
Cover of the book Contemporary Advances in Innovative and Applicable Information Technology by Makoto Katori
Cover of the book Re-visioning the Public in Post-reform Urban China by Makoto Katori
Cover of the book Inclusive Teaching Strategies for Discipline-based English Studies by Makoto Katori
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy