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Direct measurement of optical properties of glacier ice using a photon-counting diffuse LiDAR

Publication ,  Journal Article
Allgaier, M; Cooper, MG; Carlson, AE; Cooley, SW; Ryan, JC; Smith, BJ
Published in: Journal of Glaciology
December 2, 2022

The production of meltwater from glacier ice, which is exposed at the margins of land ice during the summer, is responsible for a large proportion of glacier mass loss. The rate of meltwater production from glacier ice is especially sensitive to its physical structure and chemical composition which combine to determine the albedo of glacier ice. However, the optical properties of near-surface glacier ice are not well known since most prior work has focused on laboratory-grown ice or deep cores. Here, we demonstrate a measurement technique based on diffuse propagation of nanosecond-duration laser pulses in near-surface glacier ice that enables the independent measurement of the scattering and absorption coefficients, allowing for a complete description of the processes governing radiative transfer. We employ a photon-counting detector to overcome the high losses associated with diffuse optics. The instrument is highly portable and rugged, making it optimally suited for deployment in remote regions. A set of measurements taken on Crook and Collier Glaciers, Oregon, serves as a demonstration of the technique. These measurements provide insight into both physical structure and composition of near-surface glacier ice and open new avenues for the analysis of light-Absorbing impurities and remote sensing of the cryosphere.

Duke Scholars

Published In

Journal of Glaciology

DOI

ISSN

0022-1430

Publication Date

December 2, 2022

Volume

68

Issue

272

Start / End Page

1210 / 1220

Related Subject Headings

  • Meteorology & Atmospheric Sciences
  • 3709 Physical geography and environmental geoscience
  • 0406 Physical Geography and Environmental Geoscience
 

Citation

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Allgaier, M., Cooper, M. G., Carlson, A. E., Cooley, S. W., Ryan, J. C., & Smith, B. J. (2022). Direct measurement of optical properties of glacier ice using a photon-counting diffuse LiDAR. Journal of Glaciology, 68(272), 1210–1220. https://doi.org/10.1017/jog.2022.34
Allgaier, M., M. G. Cooper, A. E. Carlson, S. W. Cooley, J. C. Ryan, and B. J. Smith. “Direct measurement of optical properties of glacier ice using a photon-counting diffuse LiDAR.” Journal of Glaciology 68, no. 272 (December 2, 2022): 1210–20. https://doi.org/10.1017/jog.2022.34.
Allgaier M, Cooper MG, Carlson AE, Cooley SW, Ryan JC, Smith BJ. Direct measurement of optical properties of glacier ice using a photon-counting diffuse LiDAR. Journal of Glaciology. 2022 Dec 2;68(272):1210–20.
Allgaier, M., et al. “Direct measurement of optical properties of glacier ice using a photon-counting diffuse LiDAR.” Journal of Glaciology, vol. 68, no. 272, Dec. 2022, pp. 1210–20. Scopus, doi:10.1017/jog.2022.34.
Allgaier M, Cooper MG, Carlson AE, Cooley SW, Ryan JC, Smith BJ. Direct measurement of optical properties of glacier ice using a photon-counting diffuse LiDAR. Journal of Glaciology. 2022 Dec 2;68(272):1210–1220.
Journal cover image

Published In

Journal of Glaciology

DOI

ISSN

0022-1430

Publication Date

December 2, 2022

Volume

68

Issue

272

Start / End Page

1210 / 1220

Related Subject Headings

  • Meteorology & Atmospheric Sciences
  • 3709 Physical geography and environmental geoscience
  • 0406 Physical Geography and Environmental Geoscience