IP Library Granted Patent US 12689184
Granted Patent B2
US 12689184 · App. 17/608,225 · Granted Jul 21, 2026

Laser module

Inventors: Kazuue Fujita (Hamamatsu, JP); Shohei Hayashi (Hamamatsu, JP); Hiroyasu Fujiwara (Hamamatsu, JP); Atsushi Nakanishi (Hamamatsu, JP); Akio Ito (Hamamatsu, JP); Tatsuo Dougakiuchi (Hamamatsu, JP)
Assignee: HAMAMATSU PHOTONICS K.K.
H01S5/3401H01S5/34346
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Quick Facts
Patent No.
US 12689184
App. No.
17/608,225
Granted
Jul 21, 2026
Kind
B2
Abstract

A laser module including a quantum cascade laser that includes a substrate having a main surface, a first clad layer provided on the main surface, an active layer provided on the first clad layer, and a second clad layer provided on the active layer, and a lens that has a lens plane disposed at a position facing the end surface of the active layer. An end surface of the active layer constitutes a resonator that causes light of a first frequency and light of a second frequency to oscillate, and the active layer is configured to generate a terahertz wave of a differential frequency between the first frequency and the second frequency. The substrate is in direct contact or indirect contact with the lens plane, and the end surface of the active layer is inclined with respect to a portion facing the end surface in the lens plane.

Claims (26)

1 . A laser module comprising:

a quantum cascade laser that includes:

a substrate having a main surface, a rear surface opposite to the main surface, and a side surface extending between the main surface and the rear surface, the side surface defining an apex corner portion;

a first clad layer provided on the main surface;

an active layer provided on a side of the first clad layer which is opposite to the substrate; and

a second clad layer provided on a side of the active layer which is opposite to the first clad layer,

wherein an end surface of the active layer in a direction intersecting a stacking direction of the substrate, the first clad layer, the active layer, and the second clad layer constitutes a resonator that causes light of a first frequency and light of a second frequency to oscillate, and the active layer is configured to generate a terahertz wave of a differential frequency between the first frequency and the second frequency; and

a lens that has a lens plane disposed at a position facing the end surface of the active layer,

wherein the substrate is in direct contact or indirect contact with the lens plane,

the end surface of the active layer is inclined with respect to a portion facing the end surface in the lens plane,

wherein the substrate is in contact with the lens plane only at the apex corner portion of the side surface such that the substrate is in line contact with the lens plane, and the end surface of the active layer is inclined away from the lens plane to form a space between the end surface of the active layer and the lens, and

wherein the main surface of the substrate is inclined with respect to the lens plane.

2 . The laser module according to claim 1 ,

wherein a focal point of the lens is located inside the quantum cascade laser.

3 . The laser module according to claim 1 ,

wherein the thickness of the substrate from the main surface to the rear surface is 200 μm or less.

4 . The laser module according to claim 1 , further comprising:

a spacer that is disposed between the quantum cascade laser and the lens,

wherein the spacer has an output surface that is parallel to the lens plane and is in contact with the lens plane, and an input surface opposite to the output surface,

the substrate is in contact with the input surface of the spacer, and

the end surface of the active layer is inclined with respect to the input surface of the spacer.

5 . The laser module according to claim 4 ,

wherein a refractive index of the spacer is approximately the same as a refractive index of the lens.

6 . The laser module according to claim 5 , further comprising:

a mounting portion that includes a mounting surface on which the rear surface of the substrate is mounted, and a contact surface that is connected to the mounting surface and is in contact with the input surface of the spacer,

wherein an angle made by the mounting surface and the contact surface is an acute angle.