Radar Absorption, Basal Reflection, Thickness, and Polarization Measurements from the Ross Ice Shelf
Abstract
Radio-glaciological parameters from Moore's Bay, in the Ross Ice Shelf, have been measured. The thickness of the ice shelf in Moore's Bay was measured from reflection times of radio-frequency pulses propagating vertically through the shelf and reflecting from the ocean, and is found to be m. Introducing a baseline of 5437 m between radio transmitter and receiver allowed the computation of the basal reflection coefficient, , separately from englacial loss. The depth-averaged attenuation length of the ice column, is shown to depend linearly on frequency. The best fit (95% confidence level) is m (20 dB/km), for the frequencies [0.100-0.850] GHz, assuming no reflection loss. The mean electric-field reflection coefficient is (-1.7 dB reflection loss) across [0.100-0.850] GHz, and is used to correct the attenuation length. Finally, the reflected power rotated into the orthogonal antenna polarization is less than 5% below 0.400 GHz, compatible with air propagation. The results imply that Moore's Bay serves as an appropriate medium for the ARIANNA high energy neutrino detector.
Keywords
Cite
@article{arxiv.1410.7134,
title = {Radar Absorption, Basal Reflection, Thickness, and Polarization Measurements from the Ross Ice Shelf},
author = {S. W. Barwick and E. C. Berg and D. Besson and T. Duffin and J. C. Hanson and S. R. Klein and S. A. Kleinfelder and C. Reed and M. Roumi and T. Stezelberger and J. Tatar and J. Walker and L. Zou},
journal= {arXiv preprint arXiv:1410.7134},
year = {2015}
}
Comments
10 pages, 6 figures