Super-Oscillating Diffractive Optical Spot Generators

Author:

Testorf Markus E.12ORCID,Gadamsetti Praneeth3,Batoni Paolo4ORCID,Poutous Menelaos K.3ORCID

Affiliation:

1. Thayer School of Engineering, Dartmouth College, 15 Thayer Drive, Hanover, NH 03755, USA

2. New Hampshire Academy of Science, 95 Dartmouth College Highway, Lyme, NH 03768, USA

3. Department of Physics and Optical Science, University of North Carolina at Charlotte, 9201 University City Blvd., Charlotte, NC 28223, USA

4. NuSpot Technologies LLC, Charlotte, NC 28269, USA

Abstract

The prior discrete Fourier transform (PDFT) is applied to the design of super-oscillating diffractive optical elements with rotational symmetry. Numerical simulations of the filter response are used to demonstrate the potential of the PDFT-based approach, which includes a regularization method for improved numerical and functional stability of the filter design. For coherent monochromatic illumination, the Strehl ratio of spot generators as a function of the spot radius is compared to the theoretical upper bound. It is shown that the performance of the PDFT design varies significantly depending on the aperture function and the encoding as a phase-only diffractive element. Experimental results are in good agreement with simulations and demonstrate the moderate demands to implement super-oscillating diffractive optical elements.

Funder

DARPA/SBIR Phase II

Publisher

MDPI AG

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