Polarization upgrade of specMACS: calibration and characterization of the 2D RGB polarization-resolving cameras

Author:

Weber Anna,Kölling TobiasORCID,Pörtge VeronikaORCID,Baumgartner AndreasORCID,Rammeloo ClemensORCID,Zinner Tobias,Mayer Bernhard

Abstract

Abstract. The spectrometer of the Munich Aerosol Cloud Scanner (specMACS) is a high-spatial-resolution hyperspectral and polarized imaging system. It is operated from a nadir-looking perspective aboard the German High Altitude and LOng range (HALO) research aircraft and is mainly used for the remote sensing of clouds. In 2019, its two hyperspectral line cameras, which are sensitive to the wavelength range between 400 and 2500 nm, were complemented by two 2D RGB polarization-resolving cameras. The polarization-resolving cameras have a large field of view and allow for multi-angle polarimetric imaging with high angular and spatial resolution. This paper introduces the polarization-resolving cameras and provides a full characterization and calibration of them. We performed a geometric calibration and georeferencing of the two cameras. In addition, a radiometric calibration using laboratory calibration measurements was carried out. The radiometric calibration includes the characterization of the dark signal, linearity, and noise as well as the measurement of the spectral response functions, a polarization calibration, vignetting correction, and absolute radiometric calibration. With the calibration, georeferenced, absolute calibrated Stokes vectors rotated into the scattering plane can be computed from raw data. We validated the calibration results by comparing observations of the sunglint, which is a known target, with radiative transfer simulations of the sunglint.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Copernicus GmbH

Reference67 articles.

1. Alexandrov, M. D., Cairns, B., Emde, C., Ackerman, A. S., and van Diedenhoven, B.: Accuracy assessments of cloud droplet size retrievals from polarized reflectance measurements by the research scanning polarimeter, Remote Sens. Environ., 125, 92–111, https://doi.org/10.1016/j.rse.2012.07.012, 2012. a

2. Bass, M., DeCusatis, C. M., Enoch, J. M., Lakshminarayanan, V., Li, G., MacDonald, C., Mahajan, V. N., and Stryland, E. V.: Handbook of Optics Volume I Geometrical and Physical Optics, Polarized Light, Components and Instruments, 3rd edn., McGraw-Hill, Inc., ISBN 978-0-07-162925-6, 2010. a, b

3. Baumgartner, A.: Characterization of Integrating Sphere Homogeneity with an Uncalibrated Imaging Spectrometer, in: Proc. WHISPERS 2013, Gainsville, Florida, USA, 25–28 June 2013, 1–4, https://elib.dlr.de/83300/ (last access: 27 February 2024), 2013. a

4. Baumgartner, A.: Grating monochromator wavelength calibration using an echelle grating wavelength meter, Opt. Express, 27, 13596–13610, https://doi.org/10.1364/OE.27.013596, 2019. a

5. Baumgartner, A.: Traceable Imaging Spectrometer Calibration and Transformation of Geometric and Spectral Pixel Properties, PhD thesis, Universität Osnabrück, https://doi.org/10.48693/38, 2022. a

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