IP Library Granted Patent US 9,759,924
Granted Patent B2
US 9,759,924 · App. 14/675,977 · Granted Sep 12, 2017

Flat profile laser beam shaper

Inventor: Todd R. Johnson (Aurora, IL)
Assignee: Fermi Research Alliance, LLC
G02B27/0905G02B27/0927G02B27/283
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 9,759,924
App. No.
14/675,977
Granted
Sep 12, 2017
Kind
B2
Abstract

A system for shaping a beam comprises an emitter for emitting coherent electromagnetic radiation. Birefringent displacers are configured between the emitter and a target wherein the at least two birefringent displacers split the coherent electromagnetic radiation into a plurality of coherent parallel beams of electromagnetic radiation thereby producing a shaped wave front of the coherent parallel beams of electromagnetic radiation.

Claims (43)

1. A system for shaping a beam comprising:

an emitter emitting spatially coherent electromagnetic radiation;

at least two birefringent displacers configured between said emitter and a target in at least two stages wherein said stages define a fixed distance, wherein said at least two birefringent displacers further comprise a parallel input and output face with an optical axis at 45 degrees thereof configured to split said coherent electromagnetic radiation into a plurality of coherent parallel beams of electromagnetic radiation thereby producing a shaped wave front of said coherent parallel beams of electromagnetic radiation; and

at least one wave plate configured in front of each of said at least two birefringent displacers.

2. The system of claim 1 wherein said at least one wave plate is at least one of:

a half wave plate; and

a quarter wave plate.

3. The system of claim 1 wherein a length of said at least two birefringent displacers decreases in a binary progression.

4. The system of claim 3 wherein said at least one wave plate may be rotated to vary said plurality of coherent parallel beams of electromagnetic radiation emerging from each of said at least two birefringent displacers, thereby altering said shape of said wave front of said coherent beam of electromagnetic radiation.

5. The system of claim 4 wherein said shape of said wave front of said coherent beam of electromagnetic radiation comprises one of:

a profile wherein the central 50% of said profile's extent has a greater intensity than adjacent ends of said profile;

a stair-step profile which increases approaching the center of said profile and then reaches the original intensity at the other end; and

a stair-step profile which decreases approaching the center of said profile and then reaches the original intensity at the other end.

6. The system of claim 1 wherein said at least two birefringent displacers comprise three birefringent displacers.

7. A method for shaping a beam comprising:

emitting spatially coherent electromagnetic radiation with an emitter;

splitting said coherent electromagnetic radiation into a plurality of coherent parallel beams of electromagnetic radiation with at least two birefringent displacers further comprising a parallel input and output face with an optical axis at 45 degrees thereof configured between said emitter and a target in at least two stages wherein said stages define a fixed distance, thereby producing a shaped wave front of said coherent parallel beams of electromagnetic radiation; and

rotating the coherent electromagnetic radiation using at least one wave plate configured in front of each of said at least two birefringent displacers.

8. The method of claim 7 wherein said at least one wave plate is at least one of:

a half wave plate; and

a quarter wave plate.

9. The method of claim 7 further comprising: decreasing a length said at least two birefringent displacers in a binary progression.

10. The method of claim 9 further comprising:

rotating said at least one wave plate to vary said plurality of coherent parallel beams of electromagnetic radiation emerging from each of said at least two birefringent displacers, thereby altering said shape of said wave front of said coherent beam of electromagnetic radiation.

11. The method of claim 10 wherein said shape of said wave front of said coherent beam of electromagnetic radiation comprises one of:

a profile wherein the central 50% of said profile's extent has a greater intensity than adjacent ends of said profile;

a stair-step profile which increases approaching the center of said profile and then reaches the original intensity at the other end; and

a stair-step profile which decreases approaching the center of said profile and then reaches the original intensity at the other end.

12. The method of claim 7 wherein said at least two birefringent displacers comprise three birefringent displacers.

13. A system for shaping a beam comprising:

an emitter emitting spatially coherent electromagnetic radiation;

at least two birefringent displacers configured between said emitter and a target in at least two stages wherein said stages define a fixed distance, wherein said at least two birefringent displacers further comprise a parallel input and output face with an optical axis at 45 degrees thereof configured to split said coherent electromagnetic radiation into a plurality of coherent parallel beams of electromagnetic radiation; and

at least one wave plate configured in front of each of said at least two birefringent displacers, thereby producing a shaped wave front of said coherent parallel beams of electromagnetic radiation.

14. The system of claim 13 wherein said at least one wave plate is at least one of:

a half wave plate; and

a quarter wave plate.

15. The system of claim 14 wherein a length said at least two birefringent displacers decreases in a binary progression.

16. The system of claim 15 wherein said at least one wave plate may be rotated to vary said plurality of coherent parallel beams of electromagnetic radiation emerging from each of said at least two birefringent displacers, thereby altering said shape of said wave front of said coherent beam of electromagnetic radiation.

17. The system of claim 16 wherein said shape of said wave front of said coherent beam of electromagnetic radiation comprises one of:

a profile wherein the central 50% of said profile's extent has a greater intensity than adjacent ends of said profile;

a stair-step profile which increases approaching the center of said profile and then reaches the original intensity at the other end; and

a stair-step profile which decreases approaching the center of said profile and then reaches the original intensity at the other end.

18. The system of claim 17 wherein said coherent electromagnetic radiation comprises a laser beam.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 30, 2024
From: FERMI RESEARCH ALLIANCE, LLC
To: FERMI FORWARD DISCOVERY GROUP, LLC
Reel/Frame 069795/0347 →
CONFIRMATORY LICENSE Recorded Jul 18, 2023
From: FERMI RESEARCH ALLIANCE, LLC
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 064300/0332 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 1, 2015
From: JOHNSON, TODD R.
To: FERMI RESEARCH ALLIANCE, LLC
Reel/Frame 035309/0602 →
Continuity (2)
Provisional Application 61973355 · Apr 1, 2014
Related Publication 20150277128A1 · Oct 1, 2015