An electrically triggered 200 kV rail-gap switch for wide aperture excimer lasers
- 1 March 1984
- journal article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 55 (5) , 1322-1331
- https://doi.org/10.1063/1.333220
Abstract
A wide aperture (7×7 cm2), high output energy (5 J in KrF and 13.8 J in XeC1), UV preionized excimer laser is described. A self-breakdown rail gap was employed as an output switch with the maximum voltage and current up to 230 kV and 300 kA, respectively. To solve the switching jitter problem associated with the self-breakdown, an electrical triggering was investigated. The measured minimum switching time delay and gap closing time were 40 and 10 ns, respectively. The number of channels up to 50 was observed with a uniform distribution over the 80-cm electrode length. The triggering jitter was measured to be less than a nanosecond. The maximum operation voltage of the triggered rail gap was 200 kV. The successful trigger operation was obtained in the range 30%–98% of the self-breakdown voltage.This publication has 18 references indexed in Scilit:
- Time-dependent gain and absorption in a 5 J UV preionized XeCl laserIEEE Journal of Quantum Electronics, 1983
- Wide aperture self-sustained discharge KrF and XeCl lasersApplied Physics Letters, 1982
- Picosecond amplification and kinetic studies of XeClIEEE Journal of Quantum Electronics, 1982
- Spatially resolved gain measurements in UV preionized homogenous discharge XeCl and KrF lasersApplied Physics Letters, 1981
- Laser microphotochemistry for use in solid-state electronicsIEEE Journal of Quantum Electronics, 1980
- Testing of a 100-kV 100-Hz Rep-Rate Gas SwitchIEEE Transactions on Plasma Science, 1980
- Long-Life High-Repetition-Rate Triggered Spark GapIEEE Transactions on Plasma Science, 1980
- An injection-locked unstable resonator rare-gas halide discharge laser of narrow linewidth and high spatial qualityIEEE Journal of Quantum Electronics, 1980
- X-ray preionization for electric discharge lasersApplied Physics Letters, 1979
- Multichannel, high-energy railgap switchReview of Scientific Instruments, 1978