Precise pulsed laser spectroscopy in the visible and far uv region: toward the measurement of the 11S-21S interval in atomic helium

S. Gangopadhyay, N. Melikechi, E. Eyler
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引用次数: 2

Abstract

Precise optical measurements have so far been conducted mainly in the visible and near-uv part of the spectrum. Extension to the far uv region depends on the development of tunable coherent sources that provide high resolution, accurate wavelength metrology, and a large photon flux. As part of our ongoing effort to measure the ionization energy of atomic helium by two- photon excitation at 120.28 nm, we have developed improved methods for generating vuv radiation in the vicinity of 120 nm, and for accurately measuring the systematic frequency shifts that occur during amplification and nonlinear mixing of nanosecond laser pulses.
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可见和远紫外区的精确脉冲激光光谱:氦原子11S-21S区间的测量
迄今为止,精确的光学测量主要是在光谱的可见和近紫外部分进行的。延伸到远紫外区域取决于可调相干源的发展,提供高分辨率,精确的波长计量,和一个大的光子通量。作为我们在120.28 nm处通过双光子激发测量氦原子电离能的持续努力的一部分,我们已经开发了改进的方法来产生120 nm附近的vuv辐射,并精确测量在纳秒激光脉冲放大和非线性混合期间发生的系统频移。
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