IP Library Granted Patent US 12689173
Granted Patent B2
US 12689173 · App. 18/478,387 · Granted Jul 21, 2026

Tunable terahertz burst mode for pulsed laser

Inventors: Simonette Pierrot (Dietikon, CH); Andreas Oehler (Zurich, CH); Felix Brunner (Zurich, CH); Benedikt Hermann (Schlieren, CH)
Assignee: Lumentum Operations LLC
H01S3/105G02B27/106H01S3/06754H01S3/094003H01S3/11H01S2302/02
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Quick Facts
Patent No.
US 12689173
App. No.
18/478,387
Granted
Jul 21, 2026
Kind
B2
Abstract

A tunable pulsed burst mode laser includes a beam splitting optical element; a plurality of optical path difference (OPD) tuning elements; a plurality of optical amplifiers; and a beam combining optical element. The beam splitting optical element is configured to split an input beam into a plurality of beams that are to propagate via a plurality of optical paths. The plurality of OPD tuning elements are configured to modify respective lengths of the plurality of optical paths. The plurality of optical amplifiers are configured to amplify respective optical powers of the plurality of beams. The beam combining optical element is configured to combine the plurality of beams into an output beam that comprises a plurality of pulsed beams, wherein a particular pulsed beam includes a plurality of beamlets that are respectively from the plurality of beams, and wherein the plurality of beamlets are provided in a terahertz (THz) burst.

Claims (78)

1 . A tunable pulsed burst mode laser, comprising:

a beam splitting optical element;

a plurality of optical path difference (OPD) tuning elements;

a plurality of optical amplifiers; and

a beam combining optical element, wherein:

the beam splitting optical element is configured to split an input beam into a plurality of beams that are to propagate from the beam splitting optical element to the beam combining optical element via a plurality of optical paths,

the plurality of OPD tuning elements are respectively disposed on the plurality of optical paths and are configured to modify respective lengths of the plurality of optical paths,

the plurality of optical amplifiers are respectively disposed on the plurality of optical paths and are configured to amplify respective optical powers of the plurality of beams, and

the beam combining optical element is configured to combine the plurality of beams into an output beam that comprises a plurality of pulsed beams,

wherein a particular pulsed beam, of the plurality of pulsed beams, includes a plurality of beamlets that are respectively from the plurality of beams, and

wherein the plurality of beamlets are provided in a terahertz (THz) burst.

2 . The tunable pulsed burst mode laser of claim 1 , wherein the beam splitting optical element includes at least one of:

a diffractive optical element (DOE),

a segmented mirror, or

a conventional beam splitter.

3 . The tunable pulsed burst mode laser of claim 1 , wherein the beam combining optical element includes at least one of:

a diffractive optical element (DOE),

a segmented mirror, or

a conventional beam splitter.

4 . The tunable pulsed burst mode laser of claim 1 , wherein the plurality of OPD tuning elements includes a plurality of fine OPD tuning elements,

wherein each fine OPD tuning element, of the plurality of fine OPD tuning elements, is configured to modify a length of an optical path, of the plurality of optical paths, within a fine tuning range from 0 micrometers (μm) to 5 μm.

5 . The tunable pulsed burst mode laser of claim 4 , wherein a fine OPD tuning element, of the plurality of fine OPD tuning elements, includes at least one of:

a micro-electromechanical-system (MEMS) mirror,

a liquid crystal on silicon (LCOS) optical element,

a piezo-electric actuated optical element,

an optical element with a tunable thickness, or

an optical element with a tunable refractive index.

6 . The tunable pulsed burst mode laser of claim 1 , wherein the plurality of OPD tuning elements includes a plurality of coarse OPD tuning elements,

wherein each coarse OPD tuning element, of the plurality of coarse OPD tuning elements, is configured to modify a length of an optical path, of the plurality of optical paths, within a coarse tuning range from 5 micrometers (μm) to 299 μm.

7 . The tunable pulsed burst mode laser of claim 6 , wherein a coarse OPD tuning element, of the plurality of coarse OPD tuning elements, includes at least one of:

a translation stage, or

a piezo-electric actuated optical element.

8 . The tunable pulsed burst mode laser of claim 1 , wherein the plurality of OPD tuning elements includes a plurality of fine and coarse OPD tuning elements,

wherein each fine and coarse OPD tuning element, of the plurality of fine and coarse OPD tuning elements, is configured to modify a length of an optical path, of the plurality of optical paths, within a coarse tuning range from 0 micrometers (μm) to 299 μm.

9 . The tunable pulsed burst mode laser of claim 8 , wherein a fine and coarse OPD tuning element, of the plurality of fine and coarse OPD tuning elements, includes at least one of:

a translation stage, or

a micro-electromechanical-system (MEMS) mirror,

a liquid crystal on silicon (LCOS) optical element,

a piezo-electric actuated optical element,

an optical element with a tunable thickness, or

an optical element with a tunable refractive index.

10 . The tunable pulsed burst mode laser of claim 1 , wherein the beam splitting optical element is configured to split the input beam into a first quantity of beams, and the beam combining optical element is configured to split each beam, of the first quantity of beams, into a second quantity of beamlets to form the output beam,

wherein the first quantity is equal to the second quantity.

11 . The tunable pulsed burst mode laser of claim 10 , wherein the particular pulsed beam of the output beam includes a third quantity of beamlets,

wherein the third quantity is equal to each of the first quantity and the second quantity.

12 . The tunable pulsed burst mode laser of claim 11 , wherein an optical power of the particular pulsed beam is equal to a total optical power of the output beam divided by the third quantity.

13 . A tunable pulsed burst mode laser, comprising:

a beam splitting optical element;

a plurality of optical path difference (OPD) tuning elements; and

a beam combining optical element, wherein:

the beam splitting optical element is configured to split an input beam into a plurality of beams that are to propagate from the beam splitting optical element to the beam combining optical element via a plurality of optical paths,

the plurality of OPD tuning elements are respectively disposed on the plurality of optical paths, and

the beam combining optical element is configured to combine the plurality of beams into an output beam that comprises a pulsed beam that includes a plurality of beamlets that are respectively from the plurality of beams, and

wherein the plurality of beamlets are provided in a burst, and

wherein an amount time between consecutive beamlets within the burst is less than or equal to 1 picosecond (ps).

14 . The tunable pulsed burst mode laser of claim 13 , wherein the burst is a tunable terahertz (THz) burst.

15 . The tunable pulsed burst mode laser of claim 13 , wherein each of the beam splitting optical element and the beam combining optical element includes at least one of:

a diffractive optical element (DOE),

a segmented mirror,

a conventional beam splitter.

16 . The tunable pulsed burst mode laser of claim 13 , wherein each OPD tuning element, of the plurality of OPD tuning elements, is configured to modify a length of an optical path, of the plurality of optical paths, within a tuning range from 0 micrometers (μm) to 299 μm.

17 . The tunable pulsed burst mode laser of claim 16 , wherein an OPD tuning element, of the plurality of OPD tuning elements, includes at least one of:

a translation stage, or

a micro-electromechanical-system (MEMS) mirror,

a liquid crystal on silicon (LCOS) optical element,

a piezo-electric actuated optical element,

an optical element with a tunable thickness, or

an optical element with a tunable refractive index.

18 . A tunable pulsed burst mode laser, comprising:

a beam splitting optical element;

a plurality of optical path difference (OPD) tuning elements; and

a beam combining optical element, wherein:

the beam splitting optical element is configured to split an input beam into a plurality of beams,

the plurality of OPD tuning elements are respectively disposed on a plurality of optical paths of the plurality of beams, and

the beam combining optical element is configured to combine the plurality of beams into an output beam that comprises a pulsed beam that includes a plurality of beamlets, and

wherein the plurality of beamlets are provided in a tunable terahertz (THz) burst.

19 . The tunable pulsed burst mode laser of claim 18 , wherein an amount time between consecutive beamlets within the tunable THz burst is less than or equal to 1 picosecond (ps).

20 . The tunable pulsed burst mode laser of claim 18 , wherein each OPD tuning element, of the plurality of OPD tuning elements, is configured to modify a length of an optical path, of the plurality of optical paths, to allow an amount time between consecutive beamlets within the tunable THz burst to be less than or equal to 1 picosecond (ps).