IP Library Granted Patent US 12704736
Granted Patent B2
US 12704736 · App. 18/727,466 · Granted Aug 11, 2026

Optical element with 3D gradient refractive index

Inventors: Lars Sandström (Philadelphia, PA); Gary Pajer (Yardley, PA); Shawn Scarfo (Pittsgrove, NJ)
Assignee: EDMUND OPTICS, INC.
G02B27/141G02B3/0087G02B23/105
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Quick Facts
Patent No.
US 12704736
App. No.
18/727,466
Granted
Aug 11, 2026
Kind
B2
Abstract

An optical element includes a traditional element having a single refractive index to transmit light from a scene from one direction; a gradient-index element attached to the traditional element and having an off-axis focus point and a refractive index that changes in a direction from a center of the gradient-index element to adjust an angle of incident light that is incident from a second direction reflected across an irradiance profile of the incident light to collimate the reflected light and reduce an optical aberration of the traditional element; and a dichroic coating between the traditional element and the gradient-index element to reflect the incident light and transmit the light from the scene, wherein the traditional element reduces an optical power of the gradient-index element.

Claims (24)

1 . An optical element, comprising:

a traditional element having a single refractive index to transmit light from a scene from one direction;

a gradient-index element attached to the traditional element and having an off-axis focus point and a refractive index that changes in a direction from a center of the gradient-index element to adjust an angle of incident light that is incident from a second direction reflected across an irradiance profile of the incident light to collimate the reflected light and reduce an optical aberration of the traditional element; and

a dichroic coating between the traditional element and the gradient-index element to reflect the incident light and transmit the light from the scene, wherein

the traditional element reduces an optical power of the gradient-index element.

2 . The optical element of claim 1 , wherein the dichroic coating is on the traditional element.

3 . The optical element of claim 1 , wherein the traditional element is optically bonded to the gradient-index element.

4 . The optical element of claim 1 , further comprising an optical substrate attached between the traditional element and the gradient-index element, wherein the dichroic coating is on the optical substrate.

5 . An optical element, comprising:

a first gradient-index element to transmit light from a scene in one direction;

a second gradient-index element attached to the first gradient-index element and having an off-axis focus point and a refractive index that changes in a direction from a center of the gradient-index element to adjust an angle of incident light that is incident from a second direction and reflected across an irradiance profile of the incident light to collimate the reflected light; and

a dichroic coating between the first gradient-index element and the second gradient-index element to reflect the incident light and transmit the light from the scene, wherein

the second gradient-index element reduces an optical power of the first gradient-index element.

6 . The optical element of claim 5 , further comprising an optical substrate attached between the first gradient-index element and the second gradient-index element, wherein the dichroic coating is on the optical substrate.

7 . An optical element, comprising:

an optic to transmit light from a scene in one direction;

a first freeform element attached to the optic and having an off-axis focus point and a first freeform surface to collimate light reflected from incident light that is incident from a second direction; and

a dichroic coating between the optic and the first freeform element to reflect the incident light and transmit the light from the scene, wherein

the optic reduces an optical power of the first freeform element.

8 . The optical element of claim 7 , further comprising an optical substrate attached between the optic and the first freeform element, wherein the dichroic coating is on the optical substrate.

9 . The optical element of claim 7 , wherein the optic is a second freeform element.

10 . The optical element of claim 7 further comprising a first gradient-index element between the first freeform element and the dichroic coating.

11 . The optical element of claim 7 , wherein the optic is a second gradient-index element.

12 . The optical element of claim 11 further comprising a second freeform element bonded to the second freeform element.