IP Library Granted Patent US 10,126,466
Granted Patent B2
US 10,126,466 · App. 15/418,743 · Granted Nov 13, 2018

Spatially multiplexed dielectric metasurface optical elements

Inventors: Dianmin Lin (Los Altos, CA); Mark L. Brongersma (Menlo Park, CA); Erez Hasman (Hadera, IL); Pieter G. Kik (Orlando, FL); Aaron L. Holsteen (Stanford, CA)
Assignees: The Board of Trustees of the Leland Stanford Junior University; Technion Research and Development Foundation Limited
G02B1/002G02B1/00G02B5/00G02B5/008
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,126,466
App. No.
15/418,743
Granted
Nov 13, 2018
Kind
B2
Abstract

A multifunctional dielectric gradient metasurface optical device has a layer of nanoscale dielectric gradient metasurface optical antenna elements deposited on a substrate layer, arranged with spatially varying orientations, shapes, or sizes in the plane of the device such that the optical device has a spatially varying optical phase response capable of optical wavefront shaping. The spatially varying optical phase response is a spatial interleaving of multiple distinct phase profiles corresponding to multiple optical sub-elements, thereby providing multifunctional wavefront shaping in the single optical element.

Claims (7)

1. A metasurface optical device comprising a layer of metasurface optical antenna elements deposited on a substrate layer, wherein the optical antenna elements are composed of nanobeam antennas that serve as optical waveplates arranged with spatial variation of the orientation angles of their fast axes in the plane of the device such that the optical device has a spatially varying optical phase response capable of optical wavefront shaping, wherein the spatially varying optical phase response is a spatial interleaving of multiple distinct phase profiles implemented by spatially dividing each of the multiple distinct phase profiles into randomized segments, and randomly selecting segments from the multiple distinct phase profiles to produce random spatial multiplexing, thereby providing multifunctional wavefront shaping.

2. The metasurface optical device of claim 1 wherein the layer of nanoscale metasurface optical antenna elements is a dielectric gradient metasurface optical element.

3. The metasurface optical device of claim 1 wherein the layer of nanoscale metasurface optical antenna elements is composed of dielectric materials, high-index semiconductor material, or insulator-and-metal materials.

4. The metasurface optical device of claim 1 wherein the optical antenna elements are implemented by nanobeams, nanofins, ellipse nanoparticles, or circular nanoparticles.

5. The metasurface optical device of claim 1 wherein the layer of nanoscale metasurface optical antenna elements has a thickness between 10% and 150% of a predetermined operational wavelength of the device.

6. The metasurface optical device of claim 1 wherein the optical antenna elements are arranged with separations less than a predetermined operational wavelength of the device.

7. The metasurface optical device of claim 1 wherein the spatial interleaving is such that each of the multiple distinct phase profiles is associated with an equal area.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 29, 2017
From: LIN, DIANMIN; BRONGERSMA, MARK L.; HOLSTEEN, AARON L.
To: THE BOARD OF TRUSTEES OF THE LELAND STANFORD JUNIOR UNIVERSITY
Reel/Frame 041114/0396 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 29, 2017
From: HASMAN, EREZ
To: THE BOARD OF TRUSTEES OF THE LELAND STANFORD JUNIOR UNIVERSITY; TECHNION RESEARCH AND DEVELOPMENT FOUNDATION LIMITED
Reel/Frame 041114/0401 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 29, 2017
From: KIK, PIETER G.
To: THE BOARD OF TRUSTEES OF THE LELAND STANFORD JUNIOR UNIVERSITY; UNIVERSITY OF CENTRAL FLORIDA RESEARCH FOUNDATION, INC.
Reel/Frame 041114/0404 →
Continuity (2)
Provisional Application 62288935 · Jan 29, 2016
Related Publication 20170219739A1 · Aug 3, 2017
Cited By (13)
US 12,276,807 US 12,389,700 US 12,411,348 US 12,416,752 US 12,460,919 US 12,548,980 US 12,638,625 US 12,639,983 US 12,641,900 US 12,645,074 US 12,680,877 US 12,681,210 US 12,699,207