IP Library Granted Patent US 11,309,679
Granted Patent B2
US 11,309,679 · App. 16/612,601 · Granted Apr 19, 2022

External optical feedback element for tuning a multi-wavelength gas laser

Inventors: Jacob Litmanovic (Mukilteo, WA); Jason Bethel (Seattle, WA); Ross Wheeler (Mukilteo, WA); Patrick Kolsch (Mukilteo, WA)
Assignee: Novanta Corporation
H01S3/0823H01S3/0815H01S3/0826H01S3/105H01S3/10092H01S3/137H01S3/2232H01S3/08063
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Quick Facts
Patent No.
US 11,309,679
App. No.
16/612,601
Granted
Apr 19, 2022
Kind
B2
Abstract

An external optical feedback element ( 108 ) for tuning an output beam of a gas laser ( 102 ) having multiple wavelengths includes a partially reflective optical element ( 108 ) positioned on a beam path of the output beam ( 106 ) outside of an internal optical cavity of the gas laser ( 102 ), and a stage ( 114 ) to support the optical element and adjust rotation, horizontal tilt angle, and vertical tilt angle of the optical element with respect to the beam path. The output beam ( 106 ) is partially reflected at the optical element ( 108 ) and fed back into the internal optical cavity of the gas laser ( 102 ), with the intensity varying for multiple wavelengths and adjusted by changing rotation, horizontal tilt angle and vertical tilt angle of the optical element. Thereby, a variable feedback of the output beam into the internal optical cavity of the gas laser is provided, which leads to a selective output wavelength of the gas laser, either at a single line or at multiple lines simultaneously. This setup may allow to control the wavelength of a commercial CO2 gas laser without a modification of the laser itself by adding a coupled cavity with a wavelength selective element like a grating to the given gas laser resonator.

Claims (38)

1. An external optical feedback element for tuning an output beam of a gas laser having a plurality of wavelengths, comprising:

a partially reflecting optical element positioned on a beam path of the output beam outside of an internal optical cavity of the gas laser; and

a stage to support the optical element and adjust a rotation, a horizontal tilt angle, and a vertical tilt angle of the optical element with respect to the beam path of the output beam;

wherein the output beam is partially reflected at the optical element and fed back into the internal optical cavity of the gas laser via the beam path,

the intensity of the reflected beam varies for the plurality of wavelengths,

the intensity of the reflected beam for each of the plurality of wavelengths is adjusted by changing the rotation, the horizontal tilt angle, and the vertical tilt angle of the optical element,

thereby a wavelength is selected at which the output beam is fed back into the internal optical cavity of the gas laser enhancing the output beam of the gas laser at the selected wavelength, wherein the partially reflective optical element has a transparent substrate and a dielectric coating which gives a reflectivity which varies according to the wavelength, and the reflectivity being in the range between 0.5% and 75% at a wavelength between 10.6 μm and 9.3 μm.

2. The external optical feedback element of claim 1 , wherein

the gas laser is a carbon dioxide laser, and

the plurality of wavelengths of the output beam of the gas laser is between 8.5 μm and 11.2 μM.

3. The external optical feedback element of claim 1 , further comprising:

a beam splitter that splits the output beam of the gas laser into a transmitted beam path and a reflected beam path,

wherein the optical element, supported by the stage, is positioned on the reflected beam path,

the stage adjusts rotation, horizontal tilt angle, and vertical tilt angle of the optical element with respect to the reflected beam path, and

the output beam is partially reflected at the optical element and fed into the internal optical cavity of the gas laser via the reflected beam path, the beam splitter, and the beam path.

4. The external optical feedback element of claim 3 , further comprising:

a mirror on the reflected beam path, wherein a portion of the output beam transmitted through the optical element reflects back on the reflected beam path.

5. A method of tuning an output beam of a gas laser having a plurality of wavelengths, comprising:

a partially reflective optical element that is supported by a stage and positioned on a beam path of the output beam outside of an internal optical cavity of the gas laser;

varying intensity of the reflected output beam for the plurality of wavelengths;

adjusting the intensity of the reflected output beam for each of the plurality of wavelengths by adjusting a rotation, a horizontal tilt angle, and a vertical tilt angle of the optical element with respect to the beam path of the output beam, thereby selecting a wavelength at which the output beam is fed back into the internal optical cavity of the gas laser, wherein the partially reflective optical element has a transparent substrate and a dielectric coating which gives a reflectivity which varies according to the wavelength, and the reflectivity being in the range between 0.5% and 75% at a wavelength between 10.6 μm and 9.3 μm;

feeding back the reflected output beam at the selected wavelength into the internal optical cavity of the gas laser; and

enhancing the output beam of the gas laser at the selected wavelength.

6. The method of claim 5 , wherein the stage adjusts the rotation, the horizontal tilt angle, and the vertical tilt angle of the optical element with respect to the beam path of the output beam.

7. The method of claim 5 , further comprising:

splitting the output beam of the gas laser by a beam splitter into a transmitted beam path and a reflected beam path,

wherein the optical element, supported by the stage, is positioned on the reflected beam path.

8. The method of claim 6 , further comprising:

reflecting a portion of the output beam transmitted through the optical element at a mirror back on the reflected beam path.

9. An external optical feedback element for tuning an output beam of a gas laser having a plurality of wavelengths, comprising:

a first partially reflecting optical element positioned on a beam path of the output beam outside of an internal optical cavity of the gas laser; and

wavelength dependent optical element (WDOE); and

a second partially reflecting optical element positioned in the beam path; and

a series of detectors, each spaced to accept specific wavelength bands; and

a controller connected to the WDOE and the series of detectors, wherein the output beam is partially reflected at the first partially reflecting optical element and fed through the WDOE to the second partially reflecting optical element which retro-reflects a portion of the beam back to the laser and transmits a portion of the beam to the series of detectors,

the controller adjusts the WDOE such that the beam reflected back to the laser has a wavelength that can be stabilized and controlled such that the laser can operate at any of the specific wavelength bands.

10. The external optical feedback element of claim 9 , wherein the specific wavelength bands are between 8.5 μm and 11.2 μm.

11. The external optical feedback element of claim 9 , wherein the specific wavelength bands are selected from the group consisting of: 9.3 μm, 9.6 μm, 10.2 μm, and 10.6 μm.

Assignments (3)
SECURITY INTEREST Recorded Jul 9, 2025
From: NOVANTA CORPORATION; ATI INDUSTRIAL AUTOMATION, INC.; NOVANTA TECHNOLOGIES UK LIMITED; NOVANTA EUROPE GMBH
To: BANK OF AMERICA, N.A.
Reel/Frame 071650/0222 →
SECURITY INTEREST Recorded Jul 9, 2021
From: NOVANTA CORPORATION
To: BANK OF AMERICA, N.A.
Reel/Frame 056802/0561 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 20, 2019
From: LITMANOVIC, JACOB; BETHEL, JASON; WHEELER, ROSS; KOLSCH, PATRICK
To: NOVANTA CORPORATION
Reel/Frame 051067/0790 →