Apparatus for tuning discharge performance in a laser chamber
US-11349273-B2 · May 31, 2022 · US
US10128629B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10128629-B2 |
| Application number | US-201514644821-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 11, 2015 |
| Priority date | Mar 12, 2014 |
| Publication date | Nov 13, 2018 |
| Grant date | Nov 13, 2018 |
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A laser oscillator which can effectively remove scattered light by a simpler configuration. The laser oscillator comprises an output mirror and a rear mirror which are arranged facing each other and a discharge tube which is arranged between the output mirror and the rear mirror. The discharge tube has a first part which gets larger in inner diameter from a first end part in an axial direction facing the output mirror toward the rear mirror.
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The invention claimed is: 1. A laser oscillator comprising: an output mirror and a rear mirror arranged opposite to each other; and a discharge tube arranged between the output mirror and the rear mirror, and configured to generate an electric discharge to excite a laser medium in the discharge tube, the discharge tube including: a first end in an axial direction, the first end being closest to the output mirror in the discharge tube, a second end in the axial direction, the second end being closest to the rear mirror in the discharge tube, and a largest inner diameter portion, which is arranged between the first end and the second end, and at which the inner diameter of the discharge tube is largest, wherein the inner diameter of the discharge tube varies in the axial direction so that: the inner diameter gets larger in a stepwise manner over an entire section in the axial direction between the first end and the largest inner diameter portion, as travelling from the first end to the largest inner diameter portion, and the inner diameter gets larger in a stepwise manner over an entire section in the axial direction between the second end and the largest inner diameter portion, as travelling from the second end to the largest inner diameter portion, wherein the discharge tube includes: a first discharge tube including the first end and having a first inner diameter which is constant in the axial direction, the first discharge tube being configured to generate electric discharge inside thereof by an electric voltage applied to the first discharge tube; and a second discharge tube arranged to adjoin the first discharge tube at the opposite side to the output mirror, and having a second inner diameter which is constant in the axial direction, the second inner diameter being larger than the first inner diameter, the second discharge tube being configured to generate electric discharge inside thereof by the electric voltage applied to the second discharge tube. 2. The laser oscillator according to claim 1 , wherein the difference between the first inner diameter and the second inner diameter is smaller than 100 μm. 3. The laser oscillator according to claim 1 , wherein the discharge tube includes: a third discharge tube including the second end and having a third inner diameter which is constant in the axial direction; and a fourth discharge tube arranged to adjoin the third discharge tube at the opposite side to the rear mirror, and having a fourth inner diameter which is constant in the axial direction, the fourth inner diameter being larger than the third inner diameter. 4. A laser processing machine comprising a laser oscillator according to claim 1 .
by special features of the discharge constricting tube, e.g. capillary · CPC title
for confinement of the discharge, e.g. by special features of the discharge constricting tube · CPC title
for gas lasers {(H01S3/0401 takes precedence)} · CPC title
Optical devices within, or forming part of, the tube, e.g. windows, mirrors (reflectors having variable properties or positions for initial adjustment of the resonator H01S3/086) · CPC title
Gas-filled discharge tubes with solid cathode (H01J25/00, H01J27/00, H01J31/00 - H01J41/00 {, H01J11/00} take precedence; gas filled spark gaps H01T; Marx converters H02M7/26) · CPC title
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