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Multistatic fiber-based system for measuring the Mueller matrix bidirectional reflectance distribution function.

Clifton G Scarboro, Colleen J Doherty, Peter J Balint-Kurti

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    |January 6, 2023
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    Summary
    This summary is machine-generated.

    This study introduces a novel system for rapid Mueller matrix bidirectional reflectance distribution function (mmBRDF) measurements using static optical fibers. This method significantly reduces the time required for characterizing surface reflectivity, improving remote sensing data accuracy.

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    Area of Science:

    • Optics and Photonics
    • Remote Sensing
    • Materials Science

    Background:

    • Bidirectional reflectance distribution function (BRDF) is crucial for correcting remote sensing data affected by varying illumination and viewing angles.
    • Conventional goniometric techniques for measuring BRDF, particularly Mueller matrix BRDF (mmBRDF), are often time-consuming and labor-intensive.
    • Accurate surface reflectivity characterization is essential for various applications, including environmental monitoring and material analysis.

    Purpose of the Study:

    • To develop and validate a novel system for rapid acquisition of mmBRDF measurements.
    • To overcome the limitations of traditional goniometric methods in terms of speed and efficiency.
    • To enable more comprehensive and faster characterization of surface optical properties.

    Main Methods:

    • A new system employing static optical fiber detectors arranged around a sample.
    • Each fiber equipped with a polarization state analyzer for simultaneous Stokes vector component acquisition.
    • Utilized altitudinal and azimuthal sampling to cover the hemispherical viewing range.
    • Detailed system setup, calibration procedures, and data processing pipeline described.

    Main Results:

    • Demonstrated the successful application of the system for mmBRDF measurements.
    • Achieved simultaneous data acquisition from multiple viewing positions, significantly reducing measurement time.
    • Validated the system's performance using a ground glass diffuser as a test surface.

    Conclusions:

    • The developed static optical fiber system offers a significantly faster alternative for mmBRDF measurements compared to conventional goniometry.
    • This advancement facilitates more efficient and comprehensive surface reflectivity characterization for remote sensing and optical analysis.
    • The system holds potential for improving the accuracy and scope of hyperspectral data correction.