Near-to-Eye Holographic Display Based on Monolithic Guided-Wave Acousto-Optics with Integrated Volume Gratings

A holographic display is comprised of space-multiplexed elemental modulators, each of which consists of a surface acoustic wave transducer atop an anisotropic waveguide. Each “line” of the overall display consists of a single anisotropic waveguide across the display's length with multiple surface acoustic wave transducers spaced along the waveguide length, although for larger displays, the waveguide may be divided into segments, each provided with separate illumination. Light that is undiffracted by a specific transducer is available for diffraction by subsequent transducers. Per transducer, guided-mode light is mode-converted to leaky-mode light, which propagates into the substrate away from the viewer before encountering a volume reflection grating and being reflected and steered towards the viewer. The display is transparent and all reflection volume gratings operate in the Bragg regime, thereby creating no dispersion of ambient light.

Researchers

Victor Bove / Bianca Datta / Nickolaos Savidis / Sundeep Jolly / Daniel Smalley

Technology Areas: Electronics & Photonics: Photonics / Sensing & Imaging: Imaging
Impact Areas: Uncharted Frontiers

  • near-to-eye and see-through holographic displays
    United States of America | Granted | 11,693,363

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