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DSCOVR EPIC Level 2 UV Aerosol Version 4 Data Released

Data Release
Issued
Aug. 11, 2026
Resolved

The Deep Space Climate Observatory (DSCOVR) Enhanced Polychromatic Imaging Camera (EPIC) Level 2 UV Aerosol Version 4 data product (DSCOVR_EPIC_L2_AER_04) is now available. EPIC radiances measurements at 340 nm and 388 nm are used to derive near UV (ultraviolet) aerosol properties. The EPIC aerosol retrieval algorithm (EPICAERUV) uses a set of aerosol models to account for the presence of carbonaceous aerosols from biomass burning and wildfires, desert dust, and urban-industrial aerosols. These aerosol models are identical to those assumed in the Ozone Monitoring Instrument algorithm; however, they are adjusted to EPIC’s 340-nm wavelength. The Oxygen-B band observations are used to derive the aerosol optical centroid height, which in turn is used to constrain the aerosol inversion at the UV wavelengths.

The Earth Polychromatic Imaging Camera (EPIC) is a 10-channel spectroradiometer (317–780 nm) operating onboard the National Oceanic and Atmospheric Administration's (NOAA) DSCOVR spacecraft. The mission's primary objective is to provide a unique angular perspective of Earth from the Earth-Sun Lagrange-1 (L-1) point, enabling continuous full-disk imaging of the entire sunlit face of the Earth. EPIC's position at the L-1 point—combined with its 0.62-degree field of view and 2048×2048 pixel CCD detector coupled to a 30-cm aperture Cassegrain telescope—supports a broad range of Earth science applications. Due to DSCOVR's tilted (Lissajous) orbit about the L-1 point, the apparent angular size of Earth varies from 0.45 to 0.53 degrees within its 6-month orbital period, with a complete set of per-band images captured every 60 to 100 minutes depending on the season.

Aerosol data products generated by the EPICAERUV algorithm are aerosol extinction optical depth (AOD) and single scattering albedo (SSA) at 340 nm and 388 nm for clear sky conditions. AOD of carbonaceous smoke and mineral dust absorbing aerosols above clouds is also reported. Aerosol Optical Centroid Height (AOCH) is retrieved using the pair of observations made at 680 nm and 688 nm bands. In addition, the UV Aerosol Index (UVAI) is calculated from 340 and 388 nm radiances for all sky and all surface conditions. 

AOD is a dimensionless measure of the extinction of light by aerosols due to the combined effect of scattering and absorption. SSA represents the fraction of extinction solely due to aerosol scattering effects. The UVAI is a residual parameter that quantifies the difference in spectral dependence between measured and calculated near UV radiances, assuming a purely molecular atmosphere. Because most of the observed positive residuals are associated with absorbing aerosols, this parameter is commonly known as the UV Absorbing Aerosol Index. EPIC-derived aerosol parameters are reported at a 10 km (nadir) resolution. 

The UV Aerosol product covers entire sunlit side of Earth seen from L1 point and span the time range from June 15, 2015 to September 29, 2026.. This product data file is produced in HDF-EOS5 format.

ParameterDetails
Detector 2048×2048 pixel CCD
Telescope Aperture 30-cm Cassegrain
Field of View 0.62 degrees
Image Cadence Every 60–100 minutes (season-dependent)
Processing Level Level 1B
File Format HDF-EOS5
Spatial Coverage Full sunlit disk of Earth
Platform Location Earth-Sun L-1 Lagrange Point

For data access and more information, visit the DSCOVR EPIC Level 1B dataset landing page at Earthdata and Earthdata Search.

For questions about this data release or assistance with data access, please contact the ASDC User Services team or visit the Earthdata Forum.

Referenced Datasets

Dataset Name Format
DSCOVR EPIC Level 2 UV Aerosol Version 4 HDF5

Details

Last Updated

Aug. 11, 2026

Published

Aug. 11, 2026

Data Center/Project

Atmospheric Science Data Center (ASDC)