Claims
- 1. A metallic gas cell comprising:
a metallic casing having an input open end and an output open end, and a opening located therebetween; an input and an output optical modules, each being respectively hermetically attached to one of said corresponding open ends; sealing means for sealing each of said optical modules in one of the corresponding open ends, thereby defining an airtight cavity in said casing when said opening is sealed; and an optical energy absorbing gas being enclosed within said cavity.
- 2. The metallic gas cell according to claim 1, further comprising a sealable metallic filling tube tightly connected to said opening of said casing.
- 3. The metallic gas cell according to claim 2, wherein said sealable metallic filling tube is sealed by a pinch-off thereof.
- 4. The metallic gas cell according to claim 1, wherein each of said optical modules protrudes outwards of said casing, thereby rendering modular said metallic gas cell.
- 5. The metallic gas cell according to claim 1, wherein said input optical module comprises a lens.
- 6. The metallic gas cell according to claim 5, wherein said lens is provided with a fiber for providing a collimator.
- 7. The metallic gas cell according to claim 1, wherein said input optical module comprises a window.
- 8. The metallic gas cell according to claim 1, wherein said input optical module collimates a light beam for a collimated propagation through said absorbing gas.
- 9. The metallic gas cell according to claim 1, wherein said input optical module comprises a laser.
- 10. The metallic gas cell according to claim 1, wherein said output optical module comprises a lens.
- 11. The metallic gas cell according to claim 1, wherein said output optical module comprises a photodetector.
- 12. The metallic gas cell according to claim 1, wherein said output optical module comprises a window.
- 13. The metallic gas cell according to claim 1, wherein each of said optical modules is provided with a metallized sidewall.
- 14. The metallic gas cell according to claim 1, wherein said sealing means is selected from group consisting of a glue, a welding, a brazing and a soldering.
- 15. The metallic gas cell according to claim 1, wherein said sealing means comprises glass frit.
- 16. The metallic gas cell according to claim 1, wherein said casing comprises stainless steel.
- 17. The metallic gas cell according to claim 1, wherein said casing comprises kovar.
- 18. The metallic gas cell according to claim 1, further comprising an optical element extending inside said casing.
- 19. The metallic gas cell according to claim 1, wherein each of said optical modules is hermetically attached to internal wall of said casing.
- 20. The metallic gas cell according to claim 1, wherein said gas enclosed within said cavity is under a reduced pressure of no more than 1 atm.
- 21. A method for manufacturing a metallic gas cell comprising the steps of:
a) providing a metallic casing having an input open end and an output open end, and a opening located therebetween; b) disposing each of an input and an output optical modules inside said casing proximate the corresponding open end thereof; c) heating at a predetermined temperature T1 said ends of said casing for sealing said optical modules to the casing, thereby defining a cavity in said casing; d) creating a substantial vacuum inside said cavity; e) filling said cavity with an optical energy absorbent gas with said opening; and; f) sealing said opening.
- 22. The method for manufacturing a metallic gas cell according to claim 21, further comprising the step of sealing a metallic filling tube to said opening at a predetermined temperature T2 higher than T1 prior to step b).
- 23. The method for manufacturing a metallic gas cell according to claim 22, wherein the step of sealing said opening comprises a pinching of said metallic filling tube.
- 24. The method for manufacturing a metallic gas cell according to claim 21 further comprising the step of metallizing a sidewall of each of said optical modules prior to step b).
- 25. The method for manufacturing a metallic gas cell according to claim 21 further comprising the step of cleaning inside of the casing prior to step c).
- 26. The method for manufacturing a metallic gas cell according to claim 21, wherein said step d) further comprises degassing at a predetermined temperature T3 lower than T1 said metallic gas cell.
- 27. The method for manufacturing a metallic gas cell according to claim 21, further comprising the step g) of attaching an optical fiber to each of said optical modules with an epoxy glue.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is related to and claims the benefit of the filing date of co-pending provisional application Ser. No. 60/365,159 (the “'159 Application”), filed on Mar. 19, 2002. The '159 Application is incorporated by reference
Provisional Applications (1)
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Number |
Date |
Country |
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60365159 |
Mar 2002 |
US |