Inversion for the density-depth profile of Dome A, East Antarctica, using frequency-modulated continuous wave radar

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Abstract

The density-depth relationship of the Antarctic ice sheet is important for establishing a high-precision surface mass balance model and predicting future ice-sheet contributions to global sea levels. A new algorithm is used to reconstruct firn density and densification rate by inverting monostatic radio wave echoes from ground-operated frequency-modulated continuous wave radar data collected near four ice cores along the transect from Zhongshan Station to Dome A. The inverted density profile is consistent with the core data within 5.54% root mean square error. Due to snow redistribution, the densification rate within 88 km of ice core DT401 is correlated with the accumulation rate and varies greatly over horizontal distances of <5 km. That is, the depth at which a critical density of 830 kg m-3 is reached decreases and densification rate increases in high-accumulation regions but decreases in low-accumulation regions. This inversion technique can be used to analyse more Antarctic radar data and obtain the density distribution trend, which can improve the accuracy of mass-balance estimations.

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APA

Yang, W., Dou, Y., Zhao, B., Guo, J., Tang, X., Zuo, G., … Zhang, Y. (2021). Inversion for the density-depth profile of Dome A, East Antarctica, using frequency-modulated continuous wave radar. Journal of Glaciology, 67(266), 1213–1227. https://doi.org/10.1017/jog.2021.70

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