@article{76bc3822d3a046e89c0d1484b3d152ef,
title = "The Mastcam-Z Radiometric Calibration Targets on NASA's Perseverance Rover: Derived Irradiance Time-Series, Dust Deposition, and Performance Over the First 350 Sols on Mars",
abstract = "The Mastcam-Z radiometric calibration targets mounted on the NASA's Perseverance rover proved to be effective in the calibration of Mastcam-Z images to reflectance (I/F) over the first 350 sols on Mars. Mastcam-Z imaged the calibration targets regularly to perform reflectance calibration on multispectral image sets of targets on the Martian surface. For each calibration target image, mean radiance values were extracted for 41 distinct regions of the targets, including patches of color and grayscale materials. Eight strong permanent magnets, placed under the primary target, attracted magnetic dust and repelled it from central surfaces, allowing the extraction of radiance values from eight regions relatively clean from dust. These radiances were combined with reflectances obtained from laboratory measurements, a one-term linear fit model was applied, and the slopes of the fits were retrieved as estimates of the solar irradiance and used to convert Mastcam-Z images from radiance to reflectance. Derived irradiance time series are smoothly varying in line with expectations based on the changing Mars-Sun distance, being only perturbed by a few significant dust events. The deposition of dust on the calibration targets was largely concentrated on the magnets, ensuring a minimal influence of dust on the calibration process. The fraction of sunlight directly hitting the calibration targets was negatively correlated with the atmospheric optical depth, as expected. Further investigation will aim at explaining the origin of a small offset observed in the fit model employed for calibration, and the causes of a yellowing effect affecting one of the calibration targets materials.",
keywords = "calibration, dust, Mars, Perseverance, reflectance",
author = "M. Merusi and Kinch, {K. B.} and Madsen, {M. B.} and Bell, {J. F.} and Maki, {J. N.} and Hayes, {A. G.} and J. Joseph and Johnson, {J. R.} and M. Rice and Cloutis, {E. A.} and D. Applin and Lemmon, {M. T.} and Vaughan, {A. F.} and N{\'u}{\~n}ez, {J. I.} and E. Jensen and Kristensen, {J. Z.} and K. Paris and E. Cisneros and Kennedy, {M. R.} and O. Gasnault",
note = "Funding Information: M. Merusi is supported by the European Union's Horizon 2020 research and innovation programme under the Marie Sk{\l}odowska‐Curie grant agreement No 801199. Support from the Carlsberg Foundation, grants CF16‐0981, CF17‐0979, and CF19‐0023 are gratefully acknowledged. This support made it possible to build the cal‐targets and to allow Danish team members to participate in a number of team meetings. J. R. Johnson is supported by ASU Contract 151112/15‐707. E. A. Cloutis thanks the Canadian Space Agency, the Natural Sciences and Engineering Research Council of Canada, and the University of Winnipeg for their funding support. M. T. Lemmon is supported by contract 15‐712 from Arizona State University and 1607215 from Caltech‐JPL. O. Gasnault's work with SuperCam on Perseverance was supported by CNES. Funding Information: M. Merusi is supported by the European Union's Horizon 2020 research and innovation programme under the Marie Sk{\l}odowska-Curie grant agreement No 801199. Support from the Carlsberg Foundation, grants CF16-0981, CF17-0979, and CF19-0023 are gratefully acknowledged. This support made it possible to build the cal-targets and to allow Danish team members to participate in a number of team meetings. J. R. Johnson is supported by ASU Contract 151112/15-707. E. A. Cloutis thanks the Canadian Space Agency, the Natural Sciences and Engineering Research Council of Canada, and the University of Winnipeg for their funding support. M. T. Lemmon is supported by contract 15-712 from Arizona State University and 1607215 from Caltech-JPL. O. Gasnault's work with SuperCam on Perseverance was supported by CNES. Publisher Copyright: {\textcopyright} 2022 The Authors.",
year = "2022",
month = dec,
doi = "10.1029/2022EA002552",
language = "English (US)",
volume = "9",
journal = "Earth and Space Science",
issn = "2333-5084",
publisher = "Wiley-Blackwell Publishing Ltd",
number = "12",
}