The Akhiezer iteration

Cade Ballew, Thomas Trogdon
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Abstract

We develop the Akhiezer iteration, a generalization of the classical Chebyshev iteration, for the inner product-free, iterative solution of indefinite linear systems using orthogonal polynomials for measures supported on multiple, disjoint intervals. The iteration applies to shifted linear solves and can then be used for efficient matrix function approximation. Using the asymptotics of orthogonal polynomials, error bounds are provided. A key component in the efficiency of the method is the ability to compute the first $k$ orthogonal polynomial recurrence coefficients and the first $k$ weighted Stieltjes transforms of these orthogonal polynomials in $\mathrm{O}(k)$ complexity using a numerical Riemann--Hilbert approach. For a special class of orthogonal polynomials, the Akhiezer polynomials, the method can be sped up significantly, with the greatest speedup occurring in the two interval case where important formulae of Akhiezer are employed and the Riemann--Hilbert approach is bypassed.
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Akhiezer迭代
我们发展了Akhiezer迭代,这是经典chebyshev迭代的推广,用于在多个不相交区间上支持测度的正交多项式的不确定线性系统的无内积迭代解。迭代适用于移位的线性解,然后可以用于有效的矩阵函数逼近。利用正交多项式的渐近性,给出了误差界。该方法效率的一个关键组成部分是能够使用数值黎曼-希尔伯特方法计算$\ mathm {O}(k)$复杂度中的这些正交多项式的前$k$递归系数和前$k$ weightedStieltjes变换。对于一类特殊的正交多项式,即Akhiezer多项式,该方法可以显著地加速,其中最大的加速发生在两个区间情况下,即使用Akhiezer的重要公式,并绕过Riemann- Hilbertapproach。
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