On frames of smooth, compactly-supported wave packets adapted to tilings of frequency space
Philip T. Gressman

TL;DR
This paper introduces a flexible framework for constructing smooth, compactly-supported wave packet frames based on broad admissible tilings of frequency space, extending beyond traditional Gabor and wavelet geometries.
Contribution
It develops a general theory for wave packet frames with smooth, compactly-supported elements tailored to minimally constrained frequency tilings, expanding the scope of existing frame constructions.
Findings
Established broad admissible tilings for wave packet frames
Constructed smooth, compactly-supported frame elements
Extended the framework beyond traditional Gabor and wavelet geometries
Abstract
We establish a broad notion of admissible tilings of frequency space which admit associated wave packet frames with elements which are smooth and compactly supported. The framework is designed to allow for tile geometries which are minimally constrained by the need to accommodate Schwartz tails on the Fourier side and goes beyond the usual scale of geometries ranging from Gabor to wavelet-type decompositions. The approach builds on techniques of Hern\'{a}ndez, Labate and Weiss and Labate, Weiss, and Wilson as well as a classical result of Ingham characterizing the best-possible Fourier decay for functions of compact support.
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Taxonomy
TopicsMathematical Analysis and Transform Methods
