Displaying One Session

08/20/2019 01:15 PM - 03:15 PM Sandpiper A/B
Time
01:15 PM - 03:15 PM
OMPEES - Optical Metamaterials, Plasmonics and Engineered Electromagnectic Structures

TuA3.1 - BIO-INSPIRED UNCOOLED MULTI-SPECTRAL INFRARED IMAGING WITH MK RANGE TEMPERATURE RESOLUTION

Presentation Type
Invited Submission
Date
08/20/2019
Time
01:15 PM - 03:15 PM
Room
Sandpiper A/B
Duration
30 Minutes
Lecture Time
01:15 PM - 01:45 PM

Abstract

Abstract

The multi-spectral sensing/imaging will provide unique intelligence in terms of spectrally resolved IR signature and/or “color” IR images. The novel printing/imprinting techniques enable development of large area, low cost IR detectors which can be mounted on various platforms efficiently with low SWaP requirements.

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OMPEES - Optical Metamaterials, Plasmonics and Engineered Electromagnectic Structures

TuA3.2 - NANOPHOTONICS FOR ARTIFICIAL NEURAL COMPUTING

Presentation Type
Invited Submission
Date
08/20/2019
Time
01:15 PM - 03:15 PM
Room
Sandpiper A/B
Duration
30 Minutes
Lecture Time
01:45 PM - 02:15 PM

Abstract

Abstract

We show that wave dynamics in nanostructured media can perform artificial neural computing, and artificial neural network can also be used to design nanophotonic media.

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OMPEES - Optical Metamaterials, Plasmonics and Engineered Electromagnectic Structures

TuA3.3 - Broadband achromatic lenses and multicolor phase-amplitude holograms based on metasurfaces

Presentation Type
Invited Submission
Date
08/20/2019
Time
01:15 PM - 03:15 PM
Room
Sandpiper A/B
Duration
30 Minutes
Lecture Time
02:15 PM - 02:45 PM

Abstract

Abstract

I will describe the effort of my research lab in investigating structural dispersion engineering of meta-atoms and creating passive metasurface-based flat optical devices using the meta-atoms. These include broadband achromatic flat lenses for full-color imaging and phase-amplitude metasurface holograms for creating defect-free holographic objects.
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OMPEES - Optical Metamaterials, Plasmonics and Engineered Electromagnectic Structures

TuA3.4 - MULTIPOLE AND METASURFACE QUANTUM WELL EMITTERS

Presentation Type
Invited Submission
Date
08/20/2019
Time
01:15 PM - 03:15 PM
Room
Sandpiper A/B
Duration
30 Minutes
Lecture Time
02:45 PM - 03:15 PM

Abstract

Abstract

Semiconductor quantum wells underpin a great number of modern optoelectronics technologies. Here, we demonstrate directional photoluminescence arising from: 1) magnetic dipole transitions in layered two-dimensional hybrid organic-inorganic perovskite quantum wells and 2) phased array GaN quantum well metasurfaces.

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