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A compact three-electrode discharge system for long-pulse KrCl excimer lasers

机译:适用于长脉冲KrCl准分子激光器的紧凑型三电极放电系统

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摘要

Spatially very homogeneous gas discharges with long-pulse duration have been realized in HCl-based rare-gas halide gas mixtures at over-atmospheric pressures. A low inductive three-electrode prepulse-mainpulse configuration with two discharge volumes has been used as excitation circuit. The energy transfer efficiency of the pump circuit is very high and reaches 87%. Furthermore, the rise time of the discharge current is very short, in order to improve the discharge stability for high pump powers. Experiments in Xe/HCl/Ne mixtures reveal spatially very homogeneous discharges for up to 370 ns (FWHM) with a power deposition of 260kWcm(-3). For discharges in Kr/HCl/Ne mixtures, we also observe very homogeneous discharges for pump power densities of more than 500kWcm(-3). Discharges in mixtures with a krypton concentration of 100 mbar and 0.5 mbar HCl are homogeneous for 300 ns against 200 ns when 1 mbar of HCl is used.
机译:在高于大气压的HCl基稀有卤化物气体混合物中,已实现了长脉冲持续时间上非常均匀的空间放电。具有两个放电体积的低电感三电极预脉冲-主脉冲配置已用作激励电路。泵电路的能量传输效率非常高,达到87%。此外,放电电流的上升时间非常短,以提高高泵浦功率时的放电稳定性。在Xe / HCl / Ne混合物中进行的实验表明,空间上非常均匀的放电长达370 ns(FWHM),功率沉积为260kWcm(-3)。对于Kr / HCl / Ne混合物中的放电,我们还观察到泵功率密度大于500kWcm(-3)时非常均匀的放电。 1浓度为100 mbar和0.5 mbar HCl的混合物中的放电在300 ns内是均匀的,而使用1 mbar HCl则为200 ns。

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