IP Library Patent Application 17673348
Patent Application
App. No. 17/673,348

OPTICAL SYSTEM AND METHOD FOR LOCKING A WAVELENGTH OF A TUNABLE LASER

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Quick Facts
Patent No.
US None
App. No.
17/673,348
Abstract

An optical system can lock a wavelength of a tunable laser to a specified wavelength of a temperature-insensitive spectral profile of a spectral filter. In some examples, the spectral filter, such as a Fabry-Perot filter, can have a temperature-insensitive peak wavelength and increasing attenuation at wavelengths away from the peak wavelength. The spectral filter can spectrally filter the laser light to form filtered laser light. A detector can detect at least a fraction of the filtered laser light. Circuitry coupled to the detector and the laser can tune the tunable laser to set a signal from the detector to a specified value corresponding to a specified wavelength in the spectral profile, and thereby adjust the selectable wavelength of the tunable laser to match the specified wavelength. In some examples, the optical system can include a polarization rotator, and can use polarization to separate incident light from return light.

Claims (30)

1 . An optical system, comprising:

a tunable laser to generate light at a selectable wavelength;

a splitter that forms a output light and a split light portion from the light;

an interference based optical filter that filters the split light portion to form a filtered light, the interference based optical filter having a peak wavelength at which an output of the interference based optical filter attenuates at wavelengths away from the peak wavelength;

a detector to detect the filtered light; and

control circuitry to lock a wavelength of the output light to match the peak wavelength of the interference based optical filter by changing the selectable wavelength of the tunable laser such that a signal that is generated by the detector from the filtered light is at a maximum.

2 . The optical system of claim 1 , wherein the interference based optical filter is a Fabry-Perot optical filter.

3 . The optical system of claim 1 , wherein the interference based optical filter comprises a first reflective surface, a second reflective surface, and a cavity between the first reflective surface and the second reflective surface.

4 . The optical system of claim 1 , wherein the interference based optical filter is configured to compensate for temperature changes to one or more components of the optical system.

5 . The optical system of claim 4 , wherein the interference based optical filter compensates for temperature changes by balancing a path of a cavity of the interference based optical filter and a refractive index of material that forms the cavity.

6 . The optical system of claim 1 , wherein the tunable laser and the interference based optical filter are formed in a photonic integrated circuit.

7 . The optical system of claim 1 , wherein the optical system further comprises an optical modulator to modulate the light from the tunable laser.

8 . The optical system of claim 1 , wherein the optical system further comprises a port that directs modulated light to an optical receiver.

9 . The optical system of claim 1 , wherein the splitter is an optical tap that taps a portion of the light from the tunable laser to form the split light portion.

10 . The optical system of claim 1 , wherein the splitter is a grating.

11 . A method for tuning a tunable laser, the method comprising:

generating light at a selectable wavelength with the tunable laser;

splitting the light using a splitter for form an output light and a split light portion;

filtering the split light portion of the light using an interference based optical filter to form a filtered light, the interference based optical filter having a peak wavelength at which an output of the interference based optical filter attenuates at wavelengths away from the peak wavelength;

detecting the filtered light using a detector; and

locking a wavelength of the output light to match the peak wavelength of the interference based optical filter using control circuitry that changes the selectable wavelength of the tunable laser such that a signal that is generated by the detector from the filtered light is at a maximum.

12 . The method of claim 11 , wherein the interference based optical filter is a Fabry-Perot optical filter.

13 . The method of claim 11 , wherein the interference based optical filter comprises a first reflective surface, a second reflective surface, and a cavity between the first reflective surface and the second reflective surface.

14 . The method of claim 11 , wherein the interference based optical filter is configured to compensate for temperature changes to the tunable laser.

15 . The method of claim 14 , wherein the interference based optical filter compensates for temperature changes by balancing a path of a cavity of the interference based optical filter and a refractive index of material that forms the cavity.

16 . The method of claim 11 , wherein the tunable laser and the interference based optical filter are formed in a photonic integrated circuit.

17 . The method of claim 11 , further comprising: modulating the light using a modulator to form a modulated light.

18 . The method of claim 17 , further comprising: directing the modulated light to an optical receiver.

19 . The method of claim 11 , wherein the splitter is an optical tap that taps a portion of the light from the tunable laser to form the split light portion.

20 . The method of claim 11 , wherein the splitter is a grating.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 7, 2022
From: AURRION, INC.
To: OPENLIGHT PHOTONICS, INC.
Reel/Frame 061624/0929 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 22, 2022
From: JUNIPER NETWORKS, INC.
To: AURRION, INC.
Reel/Frame 059774/0861 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 16, 2022
From: KOCH, BRIAN R.; ROTH, JONATHAN EDGAR, PHD
To: JUNIPER NETWORKS, INC.
Reel/Frame 059128/0380 →