IP Library › Granted Patent US 11,824,137
Granted Patent B2
US 11,824,137 · App. 16/563,337 · Granted Nov 21, 2023

Semiconductor light-emitting element and method for manufacturing semiconductor light-emitting element

Inventors: Mitsugu Wada (Hakusan, JP); Shinya Fukahori (Hakusan, JP)
Assignee: NIKKISO CO., LTD.
H01L33/06H01L33/0025H01L33/0075H01L33/14H01L33/24H01L33/32H01L33/12
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Quick Facts
Patent No.
US 11,824,137
App. No.
16/563,337
Granted
Nov 21, 2023
Kind
B2
Abstract

A semiconductor light-emitting element includes: an n-type clad layer of an n-type AlGaN-based semiconductor material; an active layer including a planarizing layer of an AlGaN-based semiconductor material provided on the n-type clad layer, a barrier layer of an AlGaN-based semiconductor material provided on the planarizing layer, and a well layer of an AlGaN-based semiconductor material provided on the barrier layer; and a p-type semiconductor layer provided on the active layer. The active layer emits deep ultraviolet light having a wavelength of 360 nm or shorter, and a ground level of a conduction band of the planarizing layer is lower than a ground level of a conduction band of the barrier layer and higher than a ground level of a conduction band of the well layer.

Claims (49)

1. A semiconductor light-emitting element comprising:

an n-type clad layer of an n-type AlGaN-based semiconductor material;

an active layer including:

a first barrier layer of an AlGaN-based semiconductor material provided on and in contact with the n-type clad layer;

a planarizing layer of an AlGaN-based semiconductor material provided on and in contact with the first barrier layer;

a second barrier layer of an AlGaN-based semiconductor material provided on and in contact with the planarizing layer; and

a well layer of an AlGaN-based semiconductor material provided on the second barrier layer

an electron blocking layer of an AlGaN-based semiconductor material provided on and in direct contact with the well layer; and

a p-type semiconductor layer provided on the electron blocking layer, wherein

the active layer emits deep ultraviolet light having a wavelength of 360 nm or shorter,

an AlN molar fraction of the n-type clad layer is 20% or higher,

an AlN molar fraction of the well layer is 10% or higher,

an AlN molar fraction of the planarizing layer is lower than an AlN molar fraction of each of the first barrier layer and the second barrier layer, and

a ground level of a conduction band of the planarizing layer is higher than a ground level of a conduction band of the well layer,

the ground level of the conduction band of the planarizing layer is lower than a ground level of a conduction band of the n-type clad layer,

a ground level of a conduction band of each of the first and second barrier layers is higher than the ground level of the conduction band of the n-type clad layer,

a ground level of a conduction band of the electron blocking layer is larger than the ground level of the conduction band of each of the first and second barrier layers, and

a difference in AlN molar fraction between the well layer and the planarizing layer is equal to or larger than 3% and equal to or smaller than 10%.

2. The semiconductor light-emitting element according to claim 1 , wherein

a thickness of the planarizing layer in a direction of stack is smaller than a thickness of the well layer.

3. The semiconductor light-emitting element according to claim 1 , wherein

the AlN molar fraction of the planarizing layer is higher than an AlN molar fraction of the well layer.

4. The semiconductor light-emitting element according to claim 1 , wherein

a difference in the ground level of the conduction band between the planarizing layer and the well layer is equal to or larger than 2% of a light energy corresponding to a wavelength of light emitted from the active layer.

5. A semiconductor light-emitting element comprising:

an n-type clad layer of an n-type AlGaN-based semiconductor material;

an active layer including:

a first planarizing layer of an AlGaN-based semiconductor material provided on the n-type clad layer;

a first barrier layer of an AlGaN-based semiconductor material provided on and in contact with the first planarizing layer;

a second planarizing layer of an AlGaN-based semiconductor material provided on and in contact with the first barrier layer;

a second barrier layer of an AlGaN-based semiconductor material provided on and in contact with the second planarizing layer; and

a well layer of an AlGaN-based semiconductor material provided on the second barrier layer;

an electron blocking layer of an AlGaN-based semiconductor material provided on and in direct contact with the well layer; and

a p-type semiconductor layer provided on the electron blocking layer, wherein

the active layer emits deep ultraviolet light having a wavelength of 360 nm or shorter,

an AlN molar fraction of the n-type clad layer is 20% or higher,

an AlN molar fraction of the well layer is 10% or higher,

an AlN molar fraction of each of the first planarizing layer and the second planarizing layer is lower than an AlN molar fraction of each of the first barrier layer and the second barrier layer,

a ground level of a conduction band of each of the first planarizing layer and the second planarizing layer is higher than a ground level of a conduction band of the well layer,

the ground level of the conduction band of each of the first planarizing layer and the second planarizing layer is lower than a ground level of a conduction band of the n-type clad layer,

a ground level of a conduction band of each of the first and second barrier layers is higher than the ground level of the conduction band of the n-type clad layer,

a ground level of a conduction band of the electron blocking layer is larger than the ground level of the conduction band of each of the first and second barrier layers, and

a difference in AlN molar fraction between the well layer and each of the first planarizing layer and the second planarizing layer is equal to or larger than 3% and equal to or smaller than 10%.

6. The semiconductor light-emitting element according to claim 5 , wherein

a thickness of each of the first planarizing layer and the second planarizing layer in the direction of stack is smaller than a thickness of the well layer.

7. The semiconductor light-emitting element according to claim 5 , wherein

the AlN molar fraction of each of the first planarizing layer and the second planarizing layer is higher than an AlN molar fraction of the well layer.

8. The semiconductor light-emitting element according to claim 5 , wherein

the active layer further includes a further barrier layer of an AlGaN-based semiconductor material provided between the n-type clad layer and the first planarizing layer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2019
From: WADA, MITSUGU; FUKAHORI, SHINYA
To: NIKKISO CO., LTD.
Reel/Frame 050329/0051 →
Priority Claims (1)
JP 2017-044055 · Mar 8, 2017 · national
Continuity (2)
Continuation PCTJP2018006231 · Feb 21, 2018
Related Publication 20190393378A1 · Dec 26, 2019