A Solution to the Problem of Phaseless Mapping for a High-Orbit Space-Ground Radio Interferometer
Abstract
We consider the problem of mapping with ultra-high angular resolution using a space-ground radio interferometer with a space antenna in a high orbit,whose apogee height exceeds the radius of the Earth by a factor of ten. In this case, a multielement interferometer essentially degenerates into a two-element interferometer. The degeneracy of the close-phase relations prevents the use of standard methods for hybrid mapping and self-calibration for the correct reconstruction of images. We propose a new phaseless mapping method based on methods for the reconstruction of images in the complete absence of phase information, using only the amplitudes of the spatial-coherence function of the source. In connection with this problem, we propose a new method for the reliable solution of the phase problem, based on optimizing information-carrying nonlinear functionals, in particular, the Shannon entropy. Results of simulations of mapping radio sources with various structures with ultra-high angular resolution in the framework of the RADIOASTRON mission are presented.
Cite
@article{arxiv.astro-ph/0512570,
title = {A Solution to the Problem of Phaseless Mapping for a High-Orbit Space-Ground Radio Interferometer},
author = {Anisa T. Bajkova},
journal= {arXiv preprint arXiv:astro-ph/0512570},
year = {2009}
}
Comments
15 pages, 7 figures