Title : ( Characterization of (Weak) Phase Retrieval Dual Frames )
Authors: Fahimeh Arabyani-Neyshaburi , Ali Akbar Arefijamaal , Rajab Ali Kamyabi Gol ,Abstract
Recovering a signal up to a unimodular constant from the magnitudes of linear measurements has been popular and well studied in recent years. However, numerous unsolved problems regarding phase retrieval still exist. Given a phase retrieval frame, may the family of phase retrieval dual frames be classified? And is such a family dense in the set of dual frames? Can we present the equivalent conditions for a family of vectors to do weak phase retrieval in complex Hilbert space case? What is the connection between phase, weak phase and norm retrieval? In this context, we aim to deal with these open problems concerning phase retrieval dual frames, weak phase retrieval frames, and specially investigate equivalent conditions for identifying these features. We provide some characterizations of alternate dual frames of a phase retrieval frame which yield phase retrieval in finite dimensional Hilbert spaces. Moreover, for some classes of frames, we show that the family of phase retrieval dual frames is open and dense in the set of dual frames. Then, we study weak phase retrieval problem. Among other things, we obtain some equivalent conditions on a family of vectors to do phase retrieval in terms of weak phase retrieval.
Keywords
Phase retrieval · Weak phase retrieval · Excess of frame · Dual frame@article{paperid:1096240,
author = {فهیمه عربیانی and علی اکبر عارفی جمال and Kamyabi Gol, Rajab Ali},
title = {Characterization of (Weak) Phase Retrieval Dual Frames},
journal = {Complex Analysis and Operator Theory},
year = {2023},
volume = {17},
number = {8},
month = {October},
issn = {1661-8254},
keywords = {Phase retrieval · Weak phase retrieval · Excess of frame · Dual frame},
}
%0 Journal Article
%T Characterization of (Weak) Phase Retrieval Dual Frames
%A فهیمه عربیانی
%A علی اکبر عارفی جمال
%A Kamyabi Gol, Rajab Ali
%J Complex Analysis and Operator Theory
%@ 1661-8254
%D 2023