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CPL-Enabled Spatial Displaying for Immersive Human-Machine Interaction

Authors: Zhiyong Tang

DOI: 10.1007/s40843-025-3465-yStatus: Verified Translated Edition
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Key Findings in This Report

• • Maximum g_lum of 1.0 achieved in electrically controlled CPL microdevices, a threshold that enables near-unity circular polarization purity for stereoscopic imaging without compensatory optical filters. • • Multi-microsphere collaborative circular polarizer (MCCP) formed via self-positioning at hydrophilic-hydrophobic interfaces and polymerized under simultaneous UV irradiation and heating, yielding monolithic integration with electroluminescent components through photonic bandgap matching. • • Depth-sensing apparatus based on binocular disparity principles characterized and visualized depth information for the first time, enabling hand-movement interaction with 3D imagery and direct spatial information exchange. • • Motion-synchronized human-machine system allowed a robotic arm to perform identical manipulations on physical objects remotely and synchronously, validated in a trapped-personnel rescue scenario with maximum safety guarantee.