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High brightness, ultra-narrow linewidth Hg source for diagnostics

机译:高亮度,超窄线宽汞光源,用于诊断

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Recent work has shown that imaging Rayleigh scattering through atomic and molecular filters provides a very attractive method for flow field diagnostics, including the imaging of temperature, density, and in some cases, velocity fields. The extension of atomic filter technologies to imaging Raman scattering is also of interest. Both Rayleigh and Raman scattering are dramatically stronger in the ultraviolet due to both resonance enhancement and to the frequency to the fourth scaling of the cross section. The development of a high-power, narrow linewidth source in the ultraviolet is, therefore, of significant interest. Mercury absorption cells operating at 254 nm are well suited for these diagnostics. This paper demonstrates that a short pulse-driven, high efficiency mercury lamp can be used to generate ultra-narrow linewidth radiation at 254 nm. The lamp is driven at 9 kHz with high voltage (30 kV), 2 nsec pulses and the spectrum of the radiation seen after several hundred nsec is almost purely the 254 nm line. The linewidth of this mercury lamp is narrow enough so it can be used in conjunction with the mercury vapor filter for both Rayleigh and Raman diagnostics.
机译:最近的工作表明,通过原子和分子过滤器对瑞利散射成像可以为流场诊断提供一种非常有吸引力的方法,包括温度,密度以及某些情况下的速度场成像。原子过滤器技术对拉曼散射成像的扩展也引起了人们的兴趣。瑞利散射和拉曼散射在紫外线中均显着增强,这归因于共振的增强和横截面的四次缩放的频率。因此,在紫外光中开发高功率,窄线宽光源非常重要。在254 nm处运行的汞吸收池非常适合这些诊断。本文证明,可以使用短脉冲驱动的高效汞灯来产生254 nm的超窄线宽辐射。用高压(30 kV),2纳秒脉冲以9 kHz的频率驱动灯,几百纳秒后看到的辐射光谱几乎完全是254 nm线。该汞灯的线宽足够窄,因此可以与汞蒸气过滤器一起用于瑞利和拉曼诊断。

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