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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >CHAPS: a new precision laser-spectroscopic technique
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CHAPS: a new precision laser-spectroscopic technique

机译:CHAPS:新型精密激光光谱技术

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摘要

We present a new technique for high-resolution pulsed spectroscopy that employs optical heterodyne detection to determine the instantaneous frequency of individual optical pulses, together with a frequency-binning method to generate high-precision spectra. We further demonstrate that active tuning of the light source is not necessary if the inherent frequency jitter of the source spans the spectral region of interest. This heterodyne-assisted approach to coherent pulsed spectroscopy (CHAPS) is applied in real time by using output from a pulsed, injection-seeded optical parametric oscillator-amplifier (OPO-OPA) system, the optical bandwidth of which is characterized via two-photon excitation of the 6S-8S transition in cesium. The resulting sub-Doppler measurements demonstrate the utility of CHAPS as a high-resolution spectroscopic technique and confirm that the pulsed OPO-OPA system operates very close to the Fourier-transform limit. (c) 2006 Optical Society of America.
机译:我们提出了一种高分辨率脉冲光谱的新技术,该技术利用光学外差检测来确定单个光学脉冲的瞬时频率,并采用分频方法来生成高精度光谱。我们进一步证明,如果光源的固有频率抖动跨越感兴趣的光谱区域,则不需要主动调整光源。这种外差辅助相干脉冲光谱法(CHAPS)通过使用脉冲注入种子的光参量振荡器-放大器(OPO-OPA)系统的输出实时应用,该系统的光带宽通过两光子来表征铯中6S-8S跃迁的激发。所得的亚多普勒测量结果证明了CHAPS作为高分辨率光谱技术的实用性,并证实了脉冲式OPO-OPA系统的工作非常接近傅里叶变换极限。 (c)2006年美国眼镜学会。

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