Numerical evaluation of oscillatory integrals via automated steepest descent contour deformation

07/14/2023
by   A. Gibbs, et al.
0

Steepest descent methods combining complex contour deformation with numerical quadrature provide an efficient and accurate approach for the evaluation of highly oscillatory integrals. However, unless the phase function governing the oscillation is particularly simple, their application requires a significant amount of a priori analysis and expert user input, to determine the appropriate contour deformation, and to deal with the non-uniformity in the accuracy of standard quadrature techniques associated with the coalescence of stationary points (saddle points) with each other, or with the endpoints of the original integration contour. In this paper we present a novel algorithm for the numerical evaluation of oscillatory integrals with general polynomial phase functions, which automates the contour deformation process and avoids the difficulties typically encountered with coalescing stationary points and endpoints. The inputs to the algorithm are simply the phase and amplitude functions, the endpoints and orientation of the original integration contour, and a small number of numerical parameters. By a series of numerical experiments we demonstrate that the algorithm is accurate and efficient over a large range of frequencies, even for examples with a large number of coalescing stationary points and with endpoints at infinity. As a particular application, we use our algorithm to evaluate cuspoid canonical integrals from scattering theory. A Matlab implementation of the algorithm is made available and is called PathFinder.

READ FULL TEXT

page 30

page 32

research
11/25/2021

A contour method for time-fractional PDEs and an application to fractional viscoelastic beam equations

We develop a rapid and accurate contour method for the solution of time-...
research
05/19/2016

Contour-based 3d tongue motion visualization using ultrasound image sequences

This article describes a contour-based 3D tongue deformation visualizati...
research
07/24/2013

Matching-Constrained Active Contours

In object segmentation by active contours, the initial contour is often ...
research
12/24/2021

A machine learning pipeline for autonomous numerical analytic continuation of Dyson-Schwinger equations

Dyson-Schwinger equations (DSEs) are a non-perturbative way to express n...
research
03/16/2022

Coverage Optimization of Camera Network for Continuous Deformable Object

In this paper, a deformable object is considered for cameras deployment ...
research
10/24/2017

The Shape of an Image: A Study of Mapper on Images

We study the topological construction called Mapper in the context of si...
research
05/19/2018

Contour location via entropy reduction leveraging multiple information sources

We introduce an algorithm to locate contours of functions that are expen...

Please sign up or login with your details

Forgot password? Click here to reset