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    We developed a novel double-channel angular-multiplexing polarization holographic imaging system. This system simultaneously records and reconstructs orthogonal polarization components for material characterization.

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    Area of Science:

    • Optics and Photonics
    • Materials Science
    • Holography

    Background:

    • Polarization holography is crucial for analyzing polarization properties of materials.
    • Existing systems often require multiple recordings or complex setups.
    • Simultaneous capture of orthogonal polarization states is challenging.

    Purpose of the Study:

    • To propose and validate a novel double-channel angular-multiplexing polarization holographic imaging system.
    • To enable simultaneous recording and reconstruction of complex amplitude distributions for orthogonal polarization components.
    • To facilitate efficient characterization of polarization-sensitive and birefringent materials.

    Main Methods:

    • A common-path, off-axis holographic system was designed.
    • The input plane was divided into object and two orthogonally polarized reference windows.
    • A 2D cross grating was integrated to facilitate angular multiplexing and interference.
    • The system forms a double-channel angular-multiplexing polarization hologram (DC-AM-PH).

    Main Results:

    • The system successfully recorded and reconstructed complex amplitude distributions of two orthogonal polarization components in a single shot.
    • Theoretical analysis and experimental validation confirmed the system's capability.
    • The system demonstrated its utility in measuring Jones matrix parameters.

    Conclusions:

    • The proposed double-channel angular-multiplexing polarization holographic system offers a single-shot solution for polarization imaging.
    • This technique provides an efficient method for characterizing polarization-sensitive and birefringent materials.
    • The system advances holographic imaging capabilities for material analysis.