<?xml version="1.0" encoding="UTF-8"?><OAI-PMH xmlns="http://www.openarchives.org/OAI/2.0/" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.openarchives.org/OAI/2.0/ http://www.openarchives.org/OAI/2.0/OAI-PMH.xsd"><responseDate>2026-04-08T20:00:03Z</responseDate><request identifier="GLAH11.033" metadataPrefix="dif" verb="GetRecord">http://nsidc.org/api/dataset/metadata/oai</request><GetRecord><record><header><identifier>oai:nsidc.org/GLAH11.033</identifier><datestamp>2026-03-03T21:03:58Z</datestamp><setSpec>cumulus</setSpec><setSpec>nasa_nsidc_daac</setSpec></header><metadata>
<DIF xmlns="http://gcmd.gsfc.nasa.gov/Aboutus/xml/dif/" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://gcmd.gsfc.nasa.gov/Aboutus/xml/dif/ http://gcmd.gsfc.nasa.gov/Aboutus/xml/dif/dif_v9.7.1.xsd"><Entry_ID>GLAH11.033</Entry_ID><Entry_Title>GLAS/ICESat L2 Global Thin Cloud/Aerosol Optical Depths Data (HDF5)</Entry_Title><Data_Set_Citation><Dataset_Creator>Zwally, H. J., Schutz, R., Hancock, D. &amp; Dimarzio, J.</Dataset_Creator><Dataset_Title>GLAS/ICESat L2 Global Thin Cloud/Aerosol Optical Depths Data (HDF5)</Dataset_Title><Dataset_Release_Date>2013-03-04</Dataset_Release_Date><Dataset_Release_Place>Boulder, Colorado USA</Dataset_Release_Place><Dataset_Publisher>NASA NSIDC DAAC: NASA National Snow and Ice Data Center Distributed Active Archive Center</Dataset_Publisher><Version>33</Version><Other_Citation_Details><Invert_Citation_Order>false</Invert_Citation_Order></Other_Citation_Details><Dataset_DOI>10.5067/ICESAT/GLAS/DATA204</Dataset_DOI><Online_Resource>https://nsidc.org/sites/default/files/multi-glah02-v033-userguide.pdf</Online_Resource><Dataset_Series_Name>GLAH11</Dataset_Series_Name></Data_Set_Citation><Personnel><Role>Technical Contact</Role><First_Name>NSIDC</First_Name><Last_Name>User Services</Last_Name><Email>nsidc@nsidc.org</Email><Phone>1-303-492-6199</Phone><Fax>1-303-492-2468</Fax><Contact_Address><Address>CIRES, 449 UCB</Address><Address>University of Colorado</Address><City>Boulder</City><Province_or_State>CO</Province_or_State><Postal_Code>80309-0449</Postal_Code><Country>USA</Country></Contact_Address></Personnel><Parameters><Category>EARTH SCIENCE</Category><Topic>ATMOSPHERE</Topic><Term>AEROSOLS</Term><Variable_Level_1>AEROSOL OPTICAL DEPTH/THICKNESS</Variable_Level_1><Variable_Level_2> </Variable_Level_2><Variable_Level_3> </Variable_Level_3><Detailed_Variable> </Detailed_Variable></Parameters><Parameters><Category>EARTH SCIENCE</Category><Topic>ATMOSPHERE</Topic><Term>CLOUDS</Term><Variable_Level_1>CLOUD MICROPHYSICS</Variable_Level_1><Variable_Level_2>CLOUD OPTICAL DEPTH/THICKNESS</Variable_Level_2><Variable_Level_3> </Variable_Level_3><Detailed_Variable> </Detailed_Variable></Parameters><ISO_Topic_Category>Climatology/Meteorology/Atmosphere</ISO_Topic_Category><Keyword>Aerosol Layer Height</Keyword><Keyword>Aerosol Multiple Scattering Coefficients</Keyword><Keyword>Attenuated Backscatter Cross-section</Keyword><Keyword>Backscatter</Keyword><Keyword>DAAC</Keyword><Keyword>EOSDIS</Keyword><Keyword>GLA11</Keyword><Keyword>GLAS</Keyword><Keyword>Global Positioning System</Keyword><Keyword>GPS</Keyword><Keyword>ICESat</Keyword><Keyword>ICESat/GLAS-project</Keyword><Keyword>ISIPS</Keyword><Keyword>Laser Return Energy</Keyword><Keyword>Lidar</Keyword><Keyword>Lidar Backscatter</Keyword><Keyword>Lidar Return Signal</Keyword><Keyword>NASA</Keyword><Keyword>NSIDC</Keyword><Keyword>Orbit Number</Keyword><Keyword>Precision Attitude Determination</Keyword><Keyword>Precision Orbit Determination</Keyword><Keyword>Range</Keyword><Sensor_Name><Short_Name>ALTIMETERS</Short_Name></Sensor_Name><Sensor_Name><Short_Name>CD</Short_Name><Long_Name>Cloud LIDAR</Long_Name></Sensor_Name><Sensor_Name><Short_Name>GLAS</Short_Name><Long_Name>Geoscience Laser Altimeter System</Long_Name></Sensor_Name><Sensor_Name><Short_Name>GPS</Short_Name><Long_Name>Global Positioning System</Long_Name></Sensor_Name><Sensor_Name><Short_Name>GPS Receiver</Short_Name><Long_Name>Dual frequency GPS receiver</Long_Name></Sensor_Name><Sensor_Name><Short_Name>LA</Short_Name><Long_Name>Laser Altimeter</Long_Name></Sensor_Name><Sensor_Name><Short_Name>PC</Short_Name><Long_Name>Photon Counter for the 532 nm Aerosol Returns</Long_Name></Sensor_Name><Source_Name><Short_Name>ICESat</Short_Name><Long_Name>Ice, Cloud and Land Elevation Satellite</Long_Name></Source_Name><Temporal_Coverage><Start_Date>2003-02-20</Start_Date><Stop_Date>2009-10-11</Stop_Date></Temporal_Coverage><Data_Set_Progress>complete</Data_Set_Progress><Spatial_Coverage><Southernmost_Latitude>-86</Southernmost_Latitude><Northernmost_Latitude>86</Northernmost_Latitude><Westernmost_Longitude>-180</Westernmost_Longitude><Easternmost_Longitude>180</Easternmost_Longitude></Spatial_Coverage><Location><Location_Category>Geographic Region</Location_Category><Location_Type>Global</Location_Type><Location_Subregion1/><Location_Subregion2/><Location_Subregion3/></Location><Data_Resolution><Latitude_Resolution>60 m to 70 m</Latitude_Resolution><Longitude_Resolution>60 m to 70 m</Longitude_Resolution><Vertical_Resolution>76.8 m</Vertical_Resolution><Temporal_Resolution>1288 minute</Temporal_Resolution></Data_Resolution><Quality>Each data granule has associated browse products that users can quickly view to determine the general quality of the data in the granule.</Quality><Access_Constraints>These data are freely, openly, and fully accessible, provided that you are logged into your NASA Earthdata profile (https://urs.earthdata.nasa.gov/).</Access_Constraints><Use_Constraints>These data are freely, openly, and fully available to use without restrictions, provided that you cite the data according to the recommended citation at https://nsidc.org/about/use_copyright.html. For more information on the NASA EOSDIS Data Use Policy, see https://earthdata.nasa.gov/earth-observation-data/data-use-policy.</Use_Constraints><Data_Set_Language>English</Data_Set_Language><Originating_Center>NASA/GSFC/EOS/EO</Originating_Center><Data_Center><Data_Center_Name><Short_Name>NASA NSIDC DAAC</Short_Name><Long_Name>NASA National Snow and Ice Data Center Distributed Active Archive Center</Long_Name></Data_Center_Name><Data_Center_URL>https://nsidc.org/daac</Data_Center_URL><Personnel><Role>Data Center Contact</Role><First_Name>NSIDC</First_Name><Last_Name>User Services</Last_Name><Email>nsidc@nsidc.org</Email><Phone>1-303-492-6199</Phone><Contact_Address><Address>National Snow and Ice Data Center</Address><Address>CIRES, 449 UCB</Address><Address>University of Colorado</Address><City>Boulder</City><Province_or_State>CO</Province_or_State><Postal_Code>80309-0449</Postal_Code><Country>USA</Country></Contact_Address></Personnel></Data_Center><Distribution><Distribution_Media>FTP</Distribution_Media><Distribution_Size>22 GB</Distribution_Size><Distribution_Format>HDF</Distribution_Format></Distribution><Reference>Bae, S. and B.E. Schutz. 2002. Precision attitude determination (PAD). GLAS algorithm theoretical basis document. Version 2.2. Austin, TX: Center for Space Research, University of Texas at Austin.

Center for Space Research. 'ICESat/GLAS.' January 2002. http://www.csr.utexas.edu/glas/.

Earth Science Data and Information System (ESDIS). 1996. EOS Ground System (EGS)
Systems and Operations Concept. Greenbelt, MD: Goddard Space Flight Center.

GLAS Science Team. 2000. Mission Operations Requirement Document (MORD) for the
Ice, Cloud and Land Elevation Satellite (ICESat) Mission. Greenbelt, MD: Goddard
Space Flight Center.

GLAS Science Team. 1997. GLAS Science Requirements. Version 2.01. Greenbelt, MD:
Goddard Space Flight Center.

Guzzi, R., ed. 2003. Exploring the atmosphere by remote sensing techniques. Heidelberg, Germany: Springer-Verlag.

Heroux, D. 2000. Progress report on GLAS interface effort with ECS NOSE. Rev. 29
December 2000. Landover, MD: Emergent-IT/Raytheon.

Herring, T.A. and K. Quinn. 1999. Atmospheric delay correction to GLAS laser
altimeter ranges. GLAS algorithm theoretical basis document. Version 1.0. Lanham, MD: Science Systems and Applications, Inc.

Jester, P., and J. Lee. 2002. GLAS standard data products specification - level 1. Version 6.0. Wallops Island, VA: Raytheon ITSS.

Lee, J. 2002. GSAS user's guide: Version 4.0. Wallops Island, VA: Raytheon ITSS.

Palm, S., W. Hart, and D. Hlavka. 2002. GLAS atmospheric data products. GLAS
algorithm theoretical basis document. Version 4.2. Lanham, MD: Science Systems
and Applications, Inc.

Rim, H., and B. Schutz. 2002. Precision orbit determination. GLAS algorithm theoretical basis document. Version 2.2. Austin, TX: Center for Space Research,
University of Texas at Austin.

Schutz, B. 2002. Laser footprint location (geolocation) and surface profiles.GLAS algorithm theoretical basis document. Version 3.0. Austin, TX: Center for Space Research, University of Texas at Austin.

Schutz, B. 2000. GLAS altimeter post-launch calibration/validation plan. Version
0.99. Austin, TX: Center for Space Research, University of Texas at Austin.

Stephens, G.L. 1994. Remote sensing of the lower atmosphere: an introduction. New York: Oxford University Press.

Wahr, J., D. Wingham, and C. Bentley. 2000. A method of combining ICESat and   GRACE satellite data to constrain Antarctic mass balance. Journal of Geophysical Research 105(B7):16,279-16,294.

Yi, D., J. Minster, and C. Bentley. 1999. Ocean tidal loading corrections. GLAS
algorithm theoretical basis document. Version 1.0. Greenbelt, MD: Goddard Space
Flight Center.

 Zwally, H.J., B. Schutz, D. Hancock, and A. Brenner. 2000. ICESat/GLAS Standard Data Products in HDF and SCF Formats. Version 1.2. Greenbelt, MD: Goddard Space Flight Center.</Reference><Summary><Abstract>GLAH11 Level-2 thin cloud/aerosol optical depths data contain thin cloud and aerosol optical depths. A thin cloud is one that does not completely attenuate the lidar signal return, which generally corresponds to clouds with optical depths less than about 2.0. 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Copyright (c) 2021 Luis Lopez

Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
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The above copyright notice and this permission notice shall be included in all
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
SOFTWARE.</LicenseText></UseConstraints><LastUpdatedDate>2024-02-29T00:00:00.000Z</LastUpdatedDate><AccessConstraints>As a condition of use, we request that you properly cite the earthaccess library to acknowledge the creators.  Formal citations also make it easier for us to track the use and impact of our data and tools, and helps us report data distribution activity and tool usage metrics to funding agencies.

If you have used earthaccess in your research, please cite as:

Barrett, A., Battisto, C., Bourbeau, J., Fisher, M., Kaufman, D., Kennedy, J., Lopez, L., Lowndes, J., Scheick, J., &amp; Steiker, A. (2024). earthaccess (Version 0.9.0) [Computer software]. https://doi.org/10.5281/zenodo.8365009

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