Durán Vicente, Schnébelin Cȏme, Guillet de Chatellus Hugues
Opt Express. 2018 May 28;26(11):13800-13809. doi: 10.1364/OE.26.013800.
We propose and characterize experimentally a new source of optical frequency combs for performing multi-heterodyne spectrometry. This comb modality is based on a frequency-shifting loop seeded with a continuous-wave (CW) monochromatic laser. The comb lines are generated by successive passes of the CW laser through an acousto-optic frequency shifter. We report the generation of frequency combs with more than 1500 mutually coherent lines, without resorting to non-linear broadening phenomena or external electronic modulation. The comb line spacing is easily reconfigurable from tens of MHz down to the kHz region. We first use a single acousto-optic frequency comb to conduct self-heterodyne interferometry with a high frequency resolution (500 kHz). By increasing the line spacing to 80 MHz, we demonstrate molecular spectroscopy on the sub-millisecond time scale. In order to reduce the detection bandwidth, we subsequently implement an acousto-optic dual-comb spectrometer with the aid of two mutually coherent frequency shifting loops. In each architecture, the potentiality of acousto-optic frequency combs for spectroscopy is validated by spectral measurements of hydrogen cyanide in the near-infrared region.
我们提出并通过实验表征了一种用于多外差光谱分析的新型光学频率梳源。这种梳状模式基于由连续波(CW)单色激光注入的移频环。梳状谱线是由连续波激光连续通过声光频率移频器产生的。我们报告了产生具有超过1500条相互相干谱线的频率梳,无需借助非线性展宽现象或外部电子调制。梳状谱线间距可轻松从几十兆赫兹重新配置到千赫兹区域。我们首先使用单个声光频率梳进行具有高频率分辨率(500千赫兹)的自外差干涉测量。通过将谱线间距增加到80兆赫兹,我们展示了亚毫秒时间尺度上的分子光谱。为了降低检测带宽,我们随后借助两个相互相干的移频环实现了一个声光双梳光谱仪。在每种架构中,通过对近红外区域氰化氢的光谱测量验证了声光频率梳用于光谱分析的潜力。