JPS5984486A - Inner mirror type gas laser tube - Google Patents
Inner mirror type gas laser tubeInfo
- Publication number
- JPS5984486A JPS5984486A JP19428082A JP19428082A JPS5984486A JP S5984486 A JPS5984486 A JP S5984486A JP 19428082 A JP19428082 A JP 19428082A JP 19428082 A JP19428082 A JP 19428082A JP S5984486 A JPS5984486 A JP S5984486A
- Authority
- JP
- Japan
- Prior art keywords
- mirror
- laser tube
- mirror type
- bellows
- laser
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Classifications
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01S—DEVICES USING THE PROCESS OF LIGHT AMPLIFICATION BY STIMULATED EMISSION OF RADIATION [LASER] TO AMPLIFY OR GENERATE LIGHT; DEVICES USING STIMULATED EMISSION OF ELECTROMAGNETIC RADIATION IN WAVE RANGES OTHER THAN OPTICAL
- H01S3/00—Lasers, i.e. devices using stimulated emission of electromagnetic radiation in the infrared, visible or ultraviolet wave range
- H01S3/02—Constructional details
- H01S3/03—Constructional details of gas laser discharge tubes
- H01S3/034—Optical devices within, or forming part of, the tube, e.g. windows, mirrors
Landscapes
- Physics & Mathematics (AREA)
- Electromagnetism (AREA)
- Engineering & Computer Science (AREA)
- Plasma & Fusion (AREA)
- Optics & Photonics (AREA)
- Lasers (AREA)
Abstract
Description
【発明の詳細な説明】 この発明は内部ミラー形のガスレーザ管に係る。[Detailed description of the invention] The present invention relates to an internal mirror type gas laser tube.
通常の内部ミラー形ガスレーザ管は、レーザ活性ガスを
封入した真空外囲器の中にレーザプラズマを発生する細
管と少くとも1対の陽極と陰極を備え、真空外囲器の両
端の細管の延長上に1対のミラーを接続してなる。A typical internal mirror type gas laser tube has a thin tube that generates laser plasma in a vacuum envelope filled with a laser active gas, and at least one pair of anode and cathode, and an extension of the thin tube at both ends of the vacuum envelope. A pair of mirrors are connected to the top.
陽極陰極間に電圧を加え細・a全通してガスを放 ・
電させてレーザ媒質を形成し、両端のミラーを調整し、
正対させることによってレーザ@撮ヲ得る。Apply voltage between the anode and cathode and release gas through the narrow a.
electrify to form a laser medium, adjust the mirrors at both ends,
By facing directly, you can get a laser photo.
ミラーを調整するため、内部ミラー形レーザでは、金属
喪の可とり性材料を介してガラス製真空外囲器とミラー
を接続し、放電させなからレーザ出力の調整を行う。最
大出力パワーが得られれば調整は完了するが、内部ミラ
ー形し−ザ青は外部ミラー形レーザにくらべてブルーメ
タ窓やミラー而の汚れが少く、保守が容易であるという
利点があるが、真空外囲器とミラーの平行性を保つ材料
とが共用のため、放電発熱によるミラーのずれが生じや
すい。このため長大なレーザ管では安定な出力が得にく
い。In order to adjust the mirror, in an internal mirror type laser, the glass vacuum envelope and the mirror are connected through a flexible metal material, and the laser output is adjusted without causing a discharge. The adjustment is completed when the maximum output power is obtained, but internal mirror type lasers have the advantage that the blue metal window and mirror are less dirty and maintenance is easier than external mirror type lasers. Because the envelope and the material that maintains the parallelism of the mirror are shared, the mirror is likely to shift due to discharge heat generation. For this reason, it is difficult to obtain stable output with a long laser tube.
さらに安定な出力を得るためにミラーの保持と調整機構
を真空外囲器と分離しようとすると、放′を訂はる電位
がミラー保持の金属曲回とう材料に生じ、電気的な絶縁
の必要性があり、構造が複雑となり、実現が困難であっ
た。If an attempt was made to separate the mirror holding and adjusting mechanism from the vacuum envelope in order to obtain a more stable output, a potential that would correct the radiation would be generated in the metal curved material holding the mirror, making electrical insulation necessary. This made the structure complicated and difficult to realize.
本発明の目的は、保守が容易な内部ミラー形レーザの特
長を生かし、しかも温度的に安定な出力特性を持ったレ
ーザ管を提供することにある。SUMMARY OF THE INVENTION An object of the present invention is to provide a laser tube that takes advantage of the easy-to-maintain features of an internal mirror type laser and also has thermally stable output characteristics.
本発明の別の目的は、内部ミラー形で容易に安全にミラ
ー調整が可能なレーザ盲ヲ提供することにある。Another object of the present invention is to provide a laser blind with an internal mirror type that allows for easy and safe mirror adjustment.
本発明によれば、ベローズ等の可とう性部品と絶縁性材
料とを用いて、真空気密を保ちつつミラーを保持し、該
絶縁性材料には7ランジが取つけられ、4gフランジを
介してミラー調整を行う内部ミラー形ガスレーザ管を得
る。According to the present invention, a flexible part such as a bellows and an insulating material are used to hold a mirror while maintaining vacuum tightness, and a 7 flange is attached to the insulating material, and a 4g flange is attached to the mirror. Obtain an internal mirror type gas laser tube with mirror adjustment.
以下図面を参照して本発明の詳細な説明する。The present invention will be described in detail below with reference to the drawings.
第1図は従来の内部ミラー形1ie−Neレーザ管の例
を示す断面図である。FIG. 1 is a sectional view showing an example of a conventional internal mirror type 1ie-Ne laser tube.
従来の内部ミラー形レーザ管は、1対の反射鏡1.1′
と陽極2と陰極3とガラス製プラズマ細管4と全備え
、ガラス製の真空外囲器5にこれらを接続してなる。A conventional internal mirror type laser tube has a pair of reflectors 1.1'
, an anode 2 , a cathode 3 , and a glass plasma capillary 4 , all of which are connected to a glass vacuum envelope 5 .
陽極2.陰極3.プラズマA:llI管4と真空外囲器
とは、従来から知られた金属−ガラス、ガラス−カラス
のJtN続技術で接続可能であるが、ミラー1゜1′は
ミラーの光学特性全損うこと無くしかも放電中にもミラ
ーの微調が可能なように、フランジ状の可とう性ミラー
1lJJ整金属6.6’ 、低融点ガラスシール材料7
.7′を用いて真空外囲器5に接続される。Anode 2. Cathode 3. Plasma A: The III tube 4 and the vacuum envelope can be connected using the conventionally known metal-glass or glass-glass JtN connection technology, but mirror 1°1' completely loses the optical properties of the mirror. In order to enable fine adjustment of the mirror even during discharge, a flange-shaped flexible mirror 1lJJ straight metal 6.6' and a low melting point glass seal material 7 are used.
.. 7' to the vacuum envelope 5.
しかし放電による発熱のため、ガラス製真空外囲器5に
は温度分布が生じ、結果としてミラー1゜1′の調整が
狂い、出力パワーは変動する。特にこの現象はレーザ管
が長大になったり、発熱量が太きいときには著しく、こ
のためtomw以上のHe−Neレーザや、 アルゴン
イオンレーザでは安定度の良い内部ミラー形レーザの実
現は困難であった。However, due to the heat generated by the discharge, a temperature distribution occurs in the glass vacuum envelope 5, and as a result, the adjustment of the mirrors 1.about.1' becomes erroneous, and the output power fluctuates. This phenomenon is particularly noticeable when the laser tube is long or generates a large amount of heat, and for this reason, it has been difficult to realize a highly stable internal mirror type laser with a He-Ne laser of tomw or higher or an argon ion laser. .
また安定度を良好に保つため、可とう性金属6゜6′を
、外部ミラー形レーザと同様に、真空外囲器とは別の熱
的に安定なインバー等の材料で平行に保持しようと1〜
ると、放電時に金属6.6′には電位が生じているため
、保持が困難であった。In addition, in order to maintain good stability, we tried to hold the flexible metal 6°6' in parallel with a thermally stable material such as Invar, which is separate from the vacuum envelope, similar to the external mirror type laser. 1~
In this case, since a potential was generated in the metal 6.6' during discharge, it was difficult to hold the metal 6.6'.
/!42図は本発明に基づく内部ミラー形ガスレーザ管
の一実施例を示す部分詳細断面図である。/! FIG. 42 is a partially detailed sectional view showing an embodiment of an internal mirror type gas laser tube according to the present invention.
本発明による内部ミラー形ガスレーザ管の、1つのミラ
ーを含む端部は、第1図に示す従来の内部ミラー形ガス
レーザ管に比較して、真空外囲器5に、ベローズ等の可
とり性のある、ガラスと接続可能な金属8と、セラミッ
ク等の固い、絶縁性のすぐれた金属と接続可能な材料9
と、ミラー7と絶縁材料9とを接続する金属1oと、金
属1゜と低融点ガラス7によって接続されたミラー1と
によって構成されている。さらに絶縁材料9には、金l
r@製の強固な7ランジ11がロー付にょシ、金)P4
8,10と絶縁されて取つけられている。フランジ11
は複数のネジ12.12’・旧・・を介して、熱的機械
的に強固な共振器支持体13に取つけられ、ネジ12,
12’・・印・を回転することにより。The end portion of the internal mirror gas laser tube according to the invention, which includes one mirror, has a flexible structure such as a bellows in the vacuum envelope 5, as compared to the conventional internal mirror gas laser tube shown in FIG. There are metals 8 that can be connected to glass, and materials 9 that can be connected to hard, highly insulating metals such as ceramics.
, a metal 1o connecting the mirror 7 and the insulating material 9, and a mirror 1 connected to the metal 1° by the low melting point glass 7. Furthermore, the insulating material 9 includes gold l
The strong 7 lunge 11 made by r@ is soldered, gold) P4
8 and 10 and are insulated from each other. Flange 11
is attached to the thermomechanically strong resonator support 13 via a plurality of screws 12, 12'.
12'... by rotating the mark.
7ランジ11.絶縁体9を弁して、可とり性材料8の可
とり範囲でミラー7の傾きを調整できる。7 lunges 11. By controlling the insulator 9, the inclination of the mirror 7 can be adjusted within the movable range of the movable material 8.
共振器支持体13/rJ′、、真空外t!14 eと分
離されているため、ガラス材料以外の熱的に安定なイン
バー等の金属材料を用いることができるし、機械的にも
強固な構造をと9得る。Resonator support 13/rJ',, outside vacuum t! 14 e, it is possible to use thermally stable metal materials such as invar other than glass materials, and a mechanically strong structure can also be obtained.
また金属8.10には放電中電位が生じるが、 ゛絶縁
性材料9全介しているため調整ネジ12.12’は安全
な接地電位とすることができる。絶縁性材料9 Kはア
ルミナ等のセラミックを円筒状にして用いればよく、金
属とのロー付も容易である。Further, although a potential is generated in the metal 8.10 during discharge, the adjustment screw 12.12' can be set to a safe ground potential because the insulating material 9 is entirely interposed. The insulating material 9K may be made of ceramic such as alumina in a cylindrical shape, and can be easily brazed with metal.
以上のように内部ミラー形のミラーやブルーメタ窓の汚
れが少く保守が容易な特長と、外部ミラー形のミラー調
整が安全に可能という特長とを兼ね備えたガスレーザ管
が実現できる。このガスレーザ管はHe−Neレーザ以
外にアルゴンレーザでもよく、ベローズ8の代9にダイ
ヤフラム等の部品を用いてもよい。As described above, it is possible to realize a gas laser tube that combines the features of the internal mirror type mirror and the blue metal window, which are easy to maintain with little dirt, and the feature of the external mirror type, which allows for safe mirror adjustment. This gas laser tube may be an argon laser other than a He-Ne laser, and a component such as a diaphragm may be used for the bellows 8 and 9.
またフランジ11は円板状以外に複数片の分割したもの
であってもよい。Moreover, the flange 11 may be divided into a plurality of pieces other than a disk shape.
なお第2図の実施例はレーザ管の一端の構造を示してい
るが、他端も同様な構造を用い得ることは自明なので省
略しである。Although the embodiment shown in FIG. 2 shows the structure of one end of the laser tube, it is obvious that a similar structure can be used for the other end, so the explanation is omitted.
Claims (1)
空気密を保ちつつミラーを保持し、該絶縁性材料vc/
I′i7ランジが取つけられ、該フランジを介してミラ
ー調整全行う内部ミラー形ガスレーザ管。The mirror is held while maintaining vacuum tightness using a removable part such as a bellows and an insulating material, and the insulating material VC/
An internal mirror type gas laser tube to which an I'i7 flange is attached and all mirror adjustments are made through the flange.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP19428082A JPS5984486A (en) | 1982-11-05 | 1982-11-05 | Inner mirror type gas laser tube |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP19428082A JPS5984486A (en) | 1982-11-05 | 1982-11-05 | Inner mirror type gas laser tube |
Publications (1)
Publication Number | Publication Date |
---|---|
JPS5984486A true JPS5984486A (en) | 1984-05-16 |
Family
ID=16321977
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP19428082A Pending JPS5984486A (en) | 1982-11-05 | 1982-11-05 | Inner mirror type gas laser tube |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPS5984486A (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS6348875A (en) * | 1986-08-19 | 1988-03-01 | Mitsubishi Electric Corp | Laser oscillator |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS4732615U (en) * | 1971-04-24 | 1972-12-12 | ||
JPS4915251U (en) * | 1972-05-13 | 1974-02-08 | ||
US3883820A (en) * | 1973-04-27 | 1975-05-13 | Coherent Radiation | Gas laser having improved multiple-part resonator adjustment |
-
1982
- 1982-11-05 JP JP19428082A patent/JPS5984486A/en active Pending
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS4732615U (en) * | 1971-04-24 | 1972-12-12 | ||
JPS4915251U (en) * | 1972-05-13 | 1974-02-08 | ||
US3883820A (en) * | 1973-04-27 | 1975-05-13 | Coherent Radiation | Gas laser having improved multiple-part resonator adjustment |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS6348875A (en) * | 1986-08-19 | 1988-03-01 | Mitsubishi Electric Corp | Laser oscillator |
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