Spurious Fourth Stokes Parameter Signal in the SMAP Radiometer
The radiometer on the NASA SMAP (Soil Moisture Active/Passive) mission is fully polarimetric and operates at L-band in the spectrum window at 1413 MHz protected for passive use only. A unique feature of the radiometer is the fully digital back-end which permits direct computation of the third and fo...
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Published in | 2020 16th Specialist Meeting on Microwave Radiometry and Remote Sensing for the Environment (MicroRad) pp. 1 - 3 |
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Main Authors | , , |
Format | Conference Proceeding |
Language | English |
Published |
IEEE
16.11.2020
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Subjects | |
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Abstract | The radiometer on the NASA SMAP (Soil Moisture Active/Passive) mission is fully polarimetric and operates at L-band in the spectrum window at 1413 MHz protected for passive use only. A unique feature of the radiometer is the fully digital back-end which permits direct computation of the third and fourth Stokes parameters (i.e., real and imaginary part of the correlation of signal at horizontal and vertical polarizations). The SMAP conical scanning geometry has provided the opportunity to look at the global distribution of the fourth Stokes parameter at constant incidence angle (40 degrees at the surface). A striking feature of these maps is the existence of a strong (± 10 K peak-to-peak) spurious signal at coastlines. There is also a weak coupling to Faraday rotation. This paper reports research to explain the existence of these spurious signals. |
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AbstractList | The radiometer on the NASA SMAP (Soil Moisture Active/Passive) mission is fully polarimetric and operates at L-band in the spectrum window at 1413 MHz protected for passive use only. A unique feature of the radiometer is the fully digital back-end which permits direct computation of the third and fourth Stokes parameters (i.e., real and imaginary part of the correlation of signal at horizontal and vertical polarizations). The SMAP conical scanning geometry has provided the opportunity to look at the global distribution of the fourth Stokes parameter at constant incidence angle (40 degrees at the surface). A striking feature of these maps is the existence of a strong (± 10 K peak-to-peak) spurious signal at coastlines. There is also a weak coupling to Faraday rotation. This paper reports research to explain the existence of these spurious signals. |
Author | Soldo, Y. Dinnat, E. Le Vine, D.M. |
Author_xml | – sequence: 1 givenname: D.M. surname: Le Vine fullname: Le Vine, D.M. email: david.m.levine@nasa.gov organization: Goddard Space Flight Center,Greenbelt,MD 20771,USA – sequence: 2 givenname: Y. surname: Soldo fullname: Soldo, Y. email: yan.soldo@nasa.gov organization: Universities Space Research Associates,Goddard Space Flght Center,Greenbelt,MD 20771,USA – sequence: 3 givenname: E. surname: Dinnat fullname: Dinnat, E. email: emannuel.dinnat@assa.gov organization: Chapman University,Goddard Space Flight Center,Greenbelt,MD 20771,USA |
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Snippet | The radiometer on the NASA SMAP (Soil Moisture Active/Passive) mission is fully polarimetric and operates at L-band in the spectrum window at 1413 MHz... |
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SubjectTerms | Geometry L-band Microwave radiometry NASA Passive Microwave Remote Sensing Radiometry Remote sensing Soil moisture Stokes parameters |
Title | Spurious Fourth Stokes Parameter Signal in the SMAP Radiometer |
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