IP Library › Granted Patent US 10,840,573
Granted Patent B2
US 10,840,573 · App. 16/181,624 · Granted Nov 17, 2020

Linear-to-circular polarizers using cascaded sheet impedances and cascaded waveplates

Inventors: Boris Tomasic (Harvard, MA); Carl R. Pfeiffer (Beavercreek, OH); Thomas P. Steffen (Xenia, OH)
Assignee: The United States of America, as represented by the Secretary of the Air Force
H01P1/17H01P1/171H01P1/172H01P1/173H01Q3/2676H01Q3/40H01Q5/335H01Q15/04H01Q15/24H01Q15/244H01Q15/246H01Q21/0031H01Q21/064G02B27/286H01P11/00
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 10,840,573
App. No.
16/181,624
Granted
Nov 17, 2020
Kind
B2
Abstract

An ultra-wideband linear-to-circular polarizer is disclosed. In accordance with embodiments of the invention, the polarizer includes a plurality of cascaded waveplates having biaxial permittivity or cascaded anisotropic sheet impedances. Each waveplate/sheet has a principal axis rotated at different angles relative to an adjacent waveplate/sheet about a z-axis of a 3-dimensional x, y, z coordinate system. Each waveplate is composed of a unit cell of an artificial anisotropic dielectric. Each sheet impedance is composed of an anisotropic metallic pattern. The polarizer further includes impedance matching layers disposed adjacent the cascaded waveplates/sheets.

Claims (21)

1. A linear-to-circular polarizer, comprising:

a plurality of cascaded waveplates having biaxial permittivity, each waveplate having a principal axis rotated at different angles relative to an adjacent waveplate about a z-axis of a 3-dimensional x, y, z coordinate system; and

impedance matching layers disposed adjacent the cascaded waveplates.

2. The linear-to-circular polarizer of claim 1 , where a first assembly of impedance matching layers is disposed adjacent a first waveplate of the cascaded waveplates, and a second assembly of impedance matching layers is disposed adjacent a second waveplate of the cascaded waveplates.

3. The linear-to-circular polarizer of claim 1 , where the plurality of cascaded waveplates comprises four waveplate assemblies, and each assembly is rotated at a different angle relative to an adjacent waveplate assembly.

4. The linear-to-circular polarizer of claim 2 , a first waveplate is rotated at a first angle relative about the z-axis, a second waveplate is rotated at a second angle about the z-axis, a third waveplate is rotated at a third angle about the z-axis, and a fourth waveplate is rotated at a fourth angle about the z-axis, the selection of the first, second and third angles based on operating wavelengths of the polarizer.

5. The linear-to-circular polarizer of claim 1 , where each waveplate has a respective length with respect to the z-axis different from a length of an adjacent waveplate.

6. The linear-to-circular polarizer of claim 1 , where the waveplates have a biaxial permittivity.

7. The linear-to-circular polarizer of claim 1 , where the impedance matching layers comprise a first assembly of impedance matching layers and a second assembly of impedance matching layers, each of the first and second assemblies of impedance matching layers comprising a first section having a first permittivity ϵ 1 , a second section having a second permittivity ϵ 2 greater than the first permittivity, and a third section having a third permittivity ϵ 3 greater than the second permittivity.

8. The linear-to-circular polarizer of claim 7 , where each assembly of impedance matching layers comprises a plurality of different substrates.

9. The linear-to-circular polarizer of claim 1 , where each waveplate comprises a unit cell of an artificial anisotropic dielectric.

10. The linear-to-circular polarizer of claim 9 , where each unit cell comprises a substrate patterned with a copper patch.

11. A linear-to-circular polarizer, comprising:

a plurality of cascaded waveplates having biaxial permittivity, each cascaded waveplate having a principal axis rotated at different angles relative to an adjacent section about a z-axis of a 3-dimensional x, y, z coordinate system, each of the plurality of cascaded waveplates comprising an assembly of printed circuit boards, and

impedance matching layers disposed adjacent the cascaded waveplates, the impedance matching layers comprising a first assembly of impedance matching layers and a second assembly of impedance matching layers, each of the first and second assemblies of impedance matching layers comprising a first section having a first permittivity ϵ 1 , a second section having a second permittivity ϵ 2 greater than the first permittivity, and a third section having a third permittivity ϵ 3 greater than the second permittivity.

12. The linear-to-circular polarizer of claim 11 , where a first waveplate is rotated at a first angle relative about the z-axis, a second waveplate is rotated at a second angle about the z-axis, a third waveplate is rotated at a third angle about the z-axis, and a fourth waveplate is rotated at a fourth angle about the z-axis, the first, second and third angles selected being selected based on operating wavelengths of the polarizer.

13. The linear-to-circular polarizer of claim 11 , where each waveplate has a respective length with respect to the z-axis different from a length of an adjacent waveplate.

14. The linear-to-circular polarizer of claim 11 , where the waveplates have a biaxial permittivity.

15. The linear-to-circular polarizer of claim 11 , where each assembly of impedance matching layers comprises a plurality of different substrates.

16. The linear-to-circular polarizer of claim 11 , where each waveplate comprises a unit cell of an artificial anisotropic dielectric.

17. The linear-to-circular polarizer of claim 16 , where each unit cell comprises a substrate patterned with a copper patch.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2018
From: TOMASIC, BORIS; PFEIFFER, CARL P; STEFFEN, THOMAS P
To: GOVERNMENT OF THE UNITED STATES, AS REPRESENTED BY THE SECRETARY OF THE AIR FORCE
Reel/Frame 047423/0378 →
Continuity (2)
Provisional Application 62594804 · Dec 5, 2017
Related Publication 20190173143A1 · Jun 6, 2019