N: 90 S: -90 E: 180 W: -180
Description
The Aura Ozone Monitoring Instrument (OMI) Level-1B (L1B) Geo-located Earth View VIS Radiance, Global-Mode (OML1BRVG) Version-3 product contains geo-located Earth view spectral radiances from the VIS detector in the wavelength range of 349 to 504 nm conducted in the global measurement mode. In the standard global measurement mode, OMI observes 60 ground pixels (13 km x 24 km at nadir) across the swath (13 km x 48 km at nadir). Each file contains data from the day lit portion of an orbit (~60 minutes) and is roughly 200 MB in size. There are approximately 14 orbits per day. Once a month, in one orbit, OMI performs dark measurements, it does not perform radiance measurements. In addition, OMI performs spatial zoom measurements one day per month. For that day, this product also contains UV2 measurements that are rebinned from the spatial zoom-in measurements. In original spatial zoom mode the nadir ground pixel size is 13 x 12 km and measurements are available only for the UV2 and VIS wavelengths (306 to 432 nm). The shortname for this OMI Level-1B Product is OML1BRVG. The lead algorithm scientist for this product is Dr. Marcel Dobber from the Royal Netherlands Meteorological Institude (KNMI).
The OML1BRVG files are stored in the HDF4 based EOS Hierarchical Data Format (HDF-EOS). The radiances for the earth measurements (also referred as signal) and its precision are stored as a 16-bit mantissa and an 8-bit exponent. The signal can be computed using the equation: signal = mantissa x 10^exponent. For the precision, the same exponent is used as for the signal.
Product Summary
Citation
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READ-ME
PI DOCUMENTATION
ALGORITHM THEORETICAL BASIS DOCUMENT (ATBD)
Publications Citing This Dataset
| Title | Year Sort ascending | Author | Topic |
|---|---|---|---|
| Harmonized cloud datasets for the Ozone Monitoring Instrument (OMI) and TROPOspheric Monitoring Instrument (TROPOMI) using the O2O2 477 nm absorption ... | Yu, Huan, De Smedt, Isabelle, Theys, Nicolas, Sneep, Maarten, Veefkind, Pepijn, Van Roozendael, Michel | Solar Irradiance, Visible Radiance | |
| Updated OMI Glyoxal Column Measurements Using Collection 4 Level 1B | Kwon, HyeongAhn, Gonzalez Abad, Gonzalo, Chan Miller, Christopher, Hall, Kirsten R., Nowlan, Caroline R., OSullivan, Ewan, Wang, Huiqun, Chong, Heesung, Ayazpour, Zolal, Liu, Xiong, Chance, Kelly | Solar Irradiance, Visible Radiance | |
| Use of machine learning and principal component analysis to retrieve nitrogen dioxide (NO2) with hyperspectral imagers and reduce noise in spectral fitting | Joiner, Joanna, Marchenko, Sergey, Fasnacht, Zachary, Lamsal, Lok, Li, Can, Vasilkov, Alexander, Krotkov, Nickolay | ULTRAVIOLET RADIANCE, Nitrogen Dioxide, Visible Radiance | |
| Estimating spectral effects of absorbing aerosols on backscattered UV radiation | Jethva, Hiren, Haffner, David P., Bhartia, Pawan K., Torres, Omar | ULTRAVIOLET RADIANCE, Visible Radiance | |
| Ozone Monitoring Instrument (OMI) collection 4: establishing a 17-year-long series of detrended level-1b data | Kleipool, Quintus, Rozemeijer, Nico, van Hoek, Mirna, Leloux, Jonatan, Loots, Erwin, Ludewig, Antje, van der Plas, Emiel, Adrichem, Daley, Harel, Raoul, Spronk, Simon, ter Linden, Mark, Jaross, Glen, Haffner, David, Veefkind, Pepijn, Levelt, Pieternel F. | ULTRAVIOLET RADIANCE, Solar Irradiance, Visible Radiance | |
| Explicit and consistent aerosol correction for visible wavelength satellite cloud and nitrogen dioxide retrievals based on optical properties from a global ... | Vasilkov, Alexander, Krotkov, Nickolay, Yang, Eun-Su, Lamsal, Lok, Joiner, Joanna, Castellanos, Patricia, Fasnacht, Zachary, Spurr, Robert | Visible Radiance, Nitrogen Dioxide, Reflectance | |
| Detection of anomalies in the UVvis reflectances from the Ozone Monitoring Instrument | Gorkavyi, Nick, Fasnacht, Zachary, Haffner, David, Marchenko, Sergey, Joiner, Joanna, Vasilkov, Alexander | Visible Radiance, Sulfur Dioxide, ULTRAVIOLET RADIANCE | |
| Aerosol-type retrieval and uncertainty quantification from OMI data | Kauppi, Anu, Kolmonen, Pekka, Laine, Marko, Tamminen, Johanna | Aerosol Optical Depth/Thickness, Solar Irradiance, Visible Radiance, Aerosol Extinction, Aerosol Optical Depth/Thickness, Aerosol Optical Depth/Thickness, Cloud Fraction, Cloud Top Pressure, ULTRAVIOLET RADIANCE |