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    We developed a novel single-shot ptychography technique to reconstruct multiple images from a single camera exposure. This advanced microscopy method recovers eight images, including polarization states, paving the way for time-resolved imaging.

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    Area of Science:

    • Optics and Photonics
    • Microscopy
    • Image Reconstruction

    Background:

    • Ptychography is a powerful lensless imaging technique that reconstructs a sample's image from a series of diffraction patterns.
    • Traditional ptychography requires multiple measurements, limiting its application in dynamic or fast-changing systems.
    • Characterizing polarization states of light adds another dimension to imaging but often requires additional optical components or measurement time.

    Purpose of the Study:

    • To demonstrate multiplexed single-shot ptychography experimentally.
    • To develop a polarization-resolved single-shot ptychographic microscope.
    • To reconstruct multiple image ஆம்plitudes, phases, and polarization states from a single measurement.

    Main Methods:

    • Utilized a polarization-resolved single-shot ptychographic microscope setup.
    • Recorded ptychographic data in a single camera exposure.
    • Reconstructed orthogonally polarized amplitudes and phases of a polarization-sensitive object.
    • Recovered amplitudes, phases, and polarization states of the probe beams.

    Main Results:

    • Successfully reconstructed eight images from single-shot ptychographic data.
    • Achieved simultaneous reconstruction of object and probe properties, including polarization.
    • Demonstrated the feasibility of multiplexing information within a single ptychographic measurement.

    Conclusions:

    • This work represents a significant advancement towards time-resolved imaging using multiplexed ptychography.
    • The developed technique enables efficient acquisition of rich image information in a single shot.
    • Offers a new pathway for studying dynamic phenomena with high spatial and polarization resolution.