Semiclassical asymptotics of orthogonal polynomials, Riemann-Hilbert problem, and universality in the matrix model

成果类型:
Article
署名作者:
Bleher, P; Its, A
刊物名称:
ANNALS OF MATHEMATICS
ISSN/ISSBN:
0003-486X
DOI:
10.2307/121101
发表日期:
1999
页码:
185-266
关键词:
2-dimensional quantum-gravity exponential weights differential-equations statistical-mechanics christoffel functions painleve equations freud conjecture coefficients eigenvalues recurrence
摘要:
We derive semiclassical asymptotics for the orthogonal polynomials P-n(z) on the line with respect to the exponential weight exp(-NV(z)), where V(z) is a double-well quartic polynomial, in the limit when n, iV --> infinity. We assume that epsilon less than or equal to (n/N) less than or equal to lambda(cr) - epsilon for some epsilon > 0, where lambda(cr) is the critical value which separates orthogonal polynomials With two cuts from the ones with one cut. Simultaneously we derive semiclassical asymptotics for the recursive coefficients of the orthogonal polynomials, and we show that these coefficients form a cycle of period two which drifts slowly with the change of the ratio n/N. The proof of the semiclassical asymptotics is based on the methods of the theory of integrable systems and on the analysis of the appropriate matrix Riemann-Hilbert problem. As an application of the semiclassical asymptotics of the orthogonal polynomials, we prove the universality of the local distribution: of eigenvalues in the matrix model with the double-well quartic interaction in the presence of two cuts.