通过径向 Dunkl 过程的大偏差实现广义贝塞尔函数和权重乘数的渐近性

IF 1.5 1区 数学 Q2 STATISTICS & PROBABILITY Probability Theory and Related Fields Pub Date : 2024-05-19 DOI:10.1007/s00440-024-01282-4
Jiaoyang Huang, Colin McSwiggen
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引用次数: 0

摘要

本文研究了当底层空间维度变大时,邓克尔理论中几个中心对象的渐近行为。我们的出发点是观察到随机矩阵理论文献中的一个最新结果隐含了径向邓克尔过程流体力学极限的大偏差原理。利用这一事实,我们证明了广义贝塞尔函数大 N 渐近线的变分公式,以及更一般的径向 Heckman-Opdam 过程族的大偏差原理。作为应用,我们证明了紧凑或复杂简单李代数不可还原表示的权乘在大秩极限的渐近行为定理。本文中的定理概括了描述戴森布朗运动、球形矩阵积分和科斯特卡数的类似渐近的几个已知结果。
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Asymptotics of generalized Bessel functions and weight multiplicities via large deviations of radial Dunkl processes

This paper studies the asymptotic behavior of several central objects in Dunkl theory as the dimension of the underlying space grows large. Our starting point is the observation that a recent result from the random matrix theory literature implies a large deviations principle for the hydrodynamic limit of radial Dunkl processes. Using this fact, we prove a variational formula for the large-N asymptotics of generalized Bessel functions, as well as a large deviations principle for the more general family of radial Heckman–Opdam processes. As an application, we prove a theorem on the asymptotic behavior of weight multiplicities of irreducible representations of compact or complex simple Lie algebras in the limit of large rank. The theorems in this paper generalize several known results describing analogous asymptotics for Dyson Brownian motion, spherical matrix integrals, and Kostka numbers.

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来源期刊
Probability Theory and Related Fields
Probability Theory and Related Fields 数学-统计学与概率论
CiteScore
3.70
自引率
5.00%
发文量
71
审稿时长
6-12 weeks
期刊介绍: Probability Theory and Related Fields publishes research papers in modern probability theory and its various fields of application. Thus, subjects of interest include: mathematical statistical physics, mathematical statistics, mathematical biology, theoretical computer science, and applications of probability theory to other areas of mathematics such as combinatorics, analysis, ergodic theory and geometry. Survey papers on emerging areas of importance may be considered for publication. The main languages of publication are English, French and German.
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