Claims
- 1. In an electrically excited laser wherein a laser gas is caused to flow along a gas flow channel and through an excitation region of said channel in which an electric discharge is established along a direction transverse to the direction of gas flow and into which an electron beam is introduced along said direction transverse to the direction of gas flow, the improvement comprising:
- discharge confining means disposed across said gas flow channel in the path of the flowing laser gas adjacent to the downstream end of said excitation region and including at least one plate-shaped member having an upstream edge located approximately at the downstream end of said excitation region, said plate-shaped member being oriented with its broad surfaces transverse to the direction of said discharge, for preventing said discharge from spreading along said gas flow path downstream from said excitation region.
- 2. The improvement according to claim 1 wherein a coating of a material including platinum is provided on at least a portion of said plate-shaped member.
- 3. The improvement according to claim 1 wherein said plate-shaped member is of metal.
- 4. The improvement according to claim 1 wherein said plate-shaped member is of non-metallic material, and further including a metal rod mounted on the upstream edge of said plate-shaped member along said gas flow direction.
- 5. The improvement according to claim 4 wherein said metal rod has an elongated slot therein tightly fitting over the upstream edge of said plate-shaped member.
- 6. In an electrically excited laser wherein a laser gas is caused to flow along a gas flow channel and through an excitation region of said channel in which an electric discharge is established along a direction transverse to the direction of gas flow and into which an electron beam is introduced along said direction transverse to the direction of gas flow, the improvement comprising:
- discharge confining means disposed across said gas flow channel in the path of the flowing laser gas adjacent to the downstream end of said excitation region and including a plurality of parallel plate-shaped members disposed in respective planes transverse to the direction of said discharge and spaced from one another along the direction of said discharge for preventing said discharge from spreading along said gas flow path downstream from said excitation region, said plate-shaped members having their respective upstream edges located approximately at the downstream end of said excitation region.
- 7. In an electrically excited laser wherein a laser gas is caused to flow along a gas flow channel and through an excitation region of said channel in which an electric discharge is established between first and second opposing electrodes disposed substantially flush with respective first and second opposing walls of said gas flow channel, and wherein an electron beam is introduced into said excitation region along a direction parallel to the direction of said discharge, the improvement comprising:
- discharge confining means disposed across said gas flow channel in the path of the flowing laser gas adjacent to the downstream end of the region between said first and second electrodes and including at least one plated-shaped member having an upstream edge located approximately at the downstream end of said region between said electrodes, said plate-shaped member being oriented with its broad surfaces parallel to said electrodes, for preventing said discharge from spreading along said gas flow path downstream from said region between said electrodes; and
- said first and second walls of said gas flow channel defining respective first and second elongated recesses adjacent to the downstream ends of said first and second electrodes, respectively, said recesses extending along a direction transverse to both the direction of said discharge and the gas flow direction.
- 8. In an electrically excited laser wherein a laser gas is caused to flow along a gas flow channel and through an excitation region of said channel in which an electric discharge is established along a direction transverse to the direction of gas flow, the improvement comprising:
- a plurality of planar electrically insulating rack members disposed across said gas flow channel adjacent to the downstream end of said excitation region in respective spaced planes parallel to both the direction of said discharge and the gas flow direction, and a plurality of planar electrically insulating shelf members carried by said rack members and oriented with their broad surfaces transverse to said rack members, said plurality of shelf members extending across said gas flow channel and each of said shelf members having its upstream edge located approximately at the downstream end of said excitation region.
- 9. The improvement according to claim 8 wherein a coating of a material including platinum is provided on at least a portion of at least one of said shelf members.
- 10. The improvement according to claim 8 wherein each said shelf member is of metal.
- 11. The improvement according to claim 8 wherein said rack members and said shelf members are of ceramic material, and further including a metal rod mounted on the upstream edge of each said shelf member along said gas flow direction.
- 12. The improvement according to claim 11 wherein each said metal rod has an elongated slot therein tightly fitting over the upstream edge of the shelf member on which it is mounted.
- 13. The improvement according to claim 8 wherein said shelf members project beyond said rack members in an upstream direction along said gas flow channel.
- 14. The improvement according to claim 8 wherein said rack members define aerodynamically tapered portions extending in an upstream direction along said gas flow channel adjacent to said shelf members.
- 15. The improvement according to claim 8 wherein the facing surfaces of adjacent ones of said rack members define a plurality of pairs of aligned grooves extending along the gas flow direction, and said shelf members are held in tightly fitting relationship in respective ones of said pair of aligned grooves.
- 16. The improvement according to claim 15 wherein each said rack member further defines stop means associated with each said groove for limiting the downstream movement of said shelf members along said gas flow channel.
- 17. In an electrically excited laser wherein a laser gas is caused to flow along a gas flow channel and through an excitation region of said channel in which an electric discharge is established along a direction transverse to the direction of gas flow and into which an electron beam is introduced along said direction transverse to the direction of gas flow, the improvement comprising:
- a plurality of electrically insulating rack members disposed across said gas flow channel adjacent to the downstream end of said excitation region along a direction parallel to the direction of said discharge, a first series of planar shelf members carried by said rack members and aligned with one another in a first plane transverse to the direction of said discharge, and a second series of planar shelf members carried by said rack members and aligned with one another in a second plane parallel to said first plane and spaced therefrom along the direction of said discharge, said first and second series of said shelf members extending across said gas flow channel and each of said shelf members having its upstream edge located approximately at the downstream end of said excitation region.
Government Interests
The invention described herein was made in the course of or under a contract or subcontract thereunder with the United States Government.
US Referenced Citations (4)