Title
Radiometric Approach for Estimating Relative Changes in Intraglacier Average Temperature
Abstract
We investigate the degree to which ultrahigh frequency radio emission can be used to estimate subsurface physical temperature in the polar ice sheets. We combine electromagnetic emission forward models with plausible models of depth-dependent physical properties in the ice sheet. Temperature models are parameterized with variables including accumulation rate, geothermal heat flux, and surface temperature. Scattering is parameterized using empirical observations of grain growth combined with measured densities. Electromagnetic absorption is modeled using dielectric dispersion processes and semiempirical models based on observations. Our models illustrate that information about East Antarctic ice sheet temperature from near the surface to near the base can be gleaned from ultrawideband radiometer data. Based on our modeling study, we illustrate an instrument concept to measure ice sheet temperature profiles comprising a novel ultrawideband radiometer.
Year
DOI
Venue
2015
10.1109/TGRS.2014.2319265
IEEE T. Geoscience and Remote Sensing
Keywords
Field
DocType
Antarctica, geoscience, Greenland, microwave radiometry, radiometers
Meteorology,Radiometric dating,Remote sensing,Microwave radiometry,Mathematics,Radiometer
Journal
Volume
Issue
ISSN
53
1
0196-2892
Citations 
PageRank 
References 
9
1.03
1
Authors
7
Name
Order
Citations
PageRank
Kenneth C. Jezek16217.49
Joel T. Johnson2926116.14
Mark R. Drinkwater326721.93
Giovanni Macelloni47825.21
Leung Tsang51053168.28
Mustafa Aksoy6497.32
Michael Durand75111.61