首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Doppler-free two-photon spectroscopy in the vacuum ultraviolet: helium 1(1)S-2(1)S transition
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Doppler-free two-photon spectroscopy in the vacuum ultraviolet: helium 1(1)S-2(1)S transition

机译:真空紫外中的无多普勒双光子光谱:氦1(1)S-2(1)S跃迁

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摘要

We describe techniques for laser spectroscopy in the vacuum-UV (VUV) spectral region that combine high spectral resolution with high absolute accuracy. A nearly transform-limited nanosecond laser source at 120 nm is constructed with difference-frequency mixing. This source is used to perform the first, to our knowledge, Doppler-free VUV measurement. We measure the inherently narrow 1(1)S-2(1)S two-photon transition in atomic helium with a spectral resolution of 7 parts in 10(8) (180 MHz), the narrowest line width so far observed at such short wavelengths. Careful measurements of optical phase perturbations allow us to determine the absolute frequency of the line center to a fractional uncertainty of 1 part in 10(8). Improvements now in progress should reduce this uncertainty to 2 parts in 10(9). (C) 2000 Optical Society of America [S0740-3224(00)01009-2]. [References: 37]
机译:我们描述了结合高光谱分辨率和高绝对精度的真空-UV(VUV)光谱区域中的激光光谱技术。通过差频混合构造了一个在120 nm处几乎受变换限制的纳秒激光源。据我们所知,该信号源用于执行第一个无多普勒VUV测量。我们测量了原子氦中固有的窄1(1)S-2(1)S两光子跃迁,其光谱分辨率为10(8)(180 MHz)中的7倍,这是迄今为止在如此短的时间内观察到的最窄线宽波长。仔细测量光学相位扰动可以使我们确定线心的绝对频率,其不确定度为10(8)的1分之一。目前正在进行的改进应将此不确定性减少到10(9)中的2部分。 (C)2000年美国光学学会[S0740-3224(00)01009-2]。 [参考:37]

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