Claims
- 1. A discharge chamber for a gas discharge laser, comprising:
a housing configured to hold a laser gas mixture; a pair of opposed main discharge electrodes within said housing; a corona-type preionization electrode within said housing; and an electric circuit external to said housing and electrically connected to said preionization electrode via a conductive feedthrough which penetrates through said housing.
- 2. The discharge chamber of claim 1, wherein said electric circuit includes a passive electrical component for damping electrical oscillations within said preionization electrode.
- 3. The discharge chamber of claim 2, wherein said passive electrical component includes a resistor.
- 4. The discharge chamber of claim 3, wherein said resistor is connected to ground.
- 5. The discharge chamber of claim 3, wherein said resistor has a resistance which is greater than or substantially equal to the wave impedance of the preionization electrode.
- 6. The discharge chamber of claim 3, wherein said resistor has a resistance which is between 8 ohms and 70 ohms.
- 7. The discharge chamber of claim 3, wherein said resistor has a resistance which is between 30 ohms and 70 ohms.
- 8. The discharge chamber of claim 1, wherein said electric circuit includes an active electrical component for providing an appropriate waveform of the voltage across the preionization electrode.
- 9. The discharge chamber of claim 8, wherein said active electrical component includes a pulse generator.
- 10. The discharge chamber of claim 1, wherein the gas discharge laser is one of an excimer laser and a F2-laser.
- 11. A discharge chamber for a gas discharge laser, comprising:
a housing configured to hold a laser gas mixture; a pair of opposed main discharge electrodes within said housing; a corona-type preionization electrode within said housing; and at least one passive electrical component electrically connected to said preionization electrode for damping electrical oscillations within said preionization electrode.
- 12. The discharge chamber of claim 11, wherein said passive electrical component includes a resistor.
- 13. The discharge chamber of claim 12, wherein said resistor is connected to ground.
- 14. The discharge chamber of claim 12, wherein said resistor has a resistance which is greater than or substantially equal to the wave impedance of the preionization electrode.
- 15. The discharge chamber of claim 12, wherein said resistor has a resistance which is between 8 ohms and 70 ohms.
- 16. The discharge chamber of claim 12, wherein said resistor has a resistance which is between 30 ohms and 70 ohms.
- 17. A discharge chamber for a gas discharge laser, comprising:
a housing configured to hold a laser gas mixture; a pair of opposed main discharge electrodes within said housing; a corona-type preionization electrode within said housing; and a resistance having a value that is greater than or equal to the wave impedance of the preionization electrode and electrically connected to said preionization electrode for damping electrical oscillations within said internal electrode.
- 18. The discharge chamber of claim 17, wherein said resistor is connected to ground.
- 19. The discharge chamber of claim 17, wherein the resistance has a value which is between 8 ohms and 70 ohms.
- 20. The discharge chamber of claim 12, wherein the resistance has a value which is between 30 ohms and 70 ohms.
PRIORITY
[0001] This application is a divisional application which claims the benefit of priority to U.S. patent application Ser. No. 09/247,887, filed Feb. 10, 1999.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09247887 |
Feb 1999 |
US |
Child |
09863931 |
May 2001 |
US |