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Surface Height and Sea Ice Freeboard of the Arctic Ocean from ICESat-2: Characteristics and Early ResultsWe present the first winter season of surface height and sea ice freeboards of the Arctic Ocean from the new ICESat-2 (IS-2) mission. The Advanced Topographic Laser Altimeter System (ATLAS) onboard has six photon-counting beams for surface profiling with a 10-kHz pulse-rate (inter-pulse distance ~0.7m) and footprints of ~17m. Geolocated heights assigned to individual photons scattered from the surface allow significant flexibility in the construction of height distributions used in surface finding. For IS-2 sea ice products, a fixed 150-photon aggregate is used to control height precision and obtain better along-track resolution over high reflectance surfaces. Quasi-specular returns in openings as narrow as ~27m, crucial for freeboard calculations, are resolved. The fixed photon aggregate results in unique variable along-track resolutions and non-uniform sampling (17m x 27m to 17m x 200m for the strong beams) of the surface. The six profiling beams – three pairs separated by 3.3 km with a strong and weak beam in each pair – provide correlated statistics at regional length scales for assessment of beam-to-beam retrieval consistency and accuracy. Analysis shows along-track height precisions of ~2cm, and agreement in the monthly freeboard distributions across the strong beams to 1-2cm. In this paper, we describe briefly the approaches used in surface height and freeboard retrievals from ATLAS photon clouds, and detail the key features of these along-track sea ice products, focusing on the first release of data collected over the Arctic Ocean, which spans the period between October 14, 2018 – the start of data collection – and the end of March 2019.
Document ID
20190031983
Acquisition Source
Goddard Space Flight Center
Document Type
Accepted Manuscript (Version with final changes)
External Source(s)
Authors
R Kwok
(Jet Propulsion Lab La Cañada Flintridge, California, United States)
T Markus ORCID
(Goddard Space Flight Center Greenbelt, Maryland, United States)
A A Petty ORCID
(University of Maryland, College Park College Park, Maryland, United States)
T A Neumann
(Goddard Space Flight Center Greenbelt, Maryland, United States)
S L Farrell ORCID
(University of Maryland, College Park College Park, Maryland, United States)
G F Cunningham
(Jet Propulsion Lab La Cañada Flintridge, California, United States)
D W Hancock
(KBR (United States) Houston, Texas, United States)
A Ivanoff
(Adnet Systems (United States) Bethesda, Maryland, United States)
J T Wimert
(KBR (United States) Houston, Texas, United States)
Date Acquired
October 4, 2019
Publication Date
September 6, 2019
Publication Information
Publication: Journal of Geophysical Research: Oceans
Publisher: American Geophysical Union (AGU)
Volume: 124
Issue: 10
Issue Publication Date: October 1, 2019
e-ISSN: 2169-929
URL: https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2019JC015486
Subject Category
Oceanography
Earth Resources And Remote Sensing
Report/Patent Number
GSFC-E-DAA-TN73862
Report Number: GSFC-E-DAA-TN73862
E-ISSN: 2169-929
Funding Number(s)
CONTRACT_GRANT: NNX17AE79A
CONTRACT_GRANT: NNG15HZ37C
CONTRACT_GRANT: 80GSFC17C0003
PROJECT: SCMD-EarthScienceSystem_883151
Distribution Limits
Public
Copyright
Public Use Permitted.
Technical Review
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