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使用扫频双太赫兹频率梳的光谱交错、梳状模式分辨光谱学。

Spectrally interleaved, comb-mode-resolved spectroscopy using swept dual terahertz combs.

作者信息

Hsieh Yi-Da, Iyonaga Yuki, Sakaguchi Yoshiyuki, Yokoyama Shuko, Inaba Hajime, Minoshima Kaoru, Hindle Francis, Araki Tsutomu, Yasui Takeshi

机构信息

Graduate School of Engineering Science, Osaka University, 1-3 Machikaneyama, Toyonaka, Osaka 560-8531, Japan.

1] Graduate School of Engineering Science, Osaka University, 1-3 Machikaneyama, Toyonaka, Osaka 560-8531, Japan [2] Micro Optics Co., Ltd, 2-20, Oe-Nakayama, Nishikyo, Kyoto 610-1104, Japan.

出版信息

Sci Rep. 2014 Jan 22;4:3816. doi: 10.1038/srep03816.

Abstract

Optical frequency combs are innovative tools for broadband spectroscopy because a series of comb modes can serve as frequency markers that are traceable to a microwave frequency standard. However, a mode distribution that is too discrete limits the spectral sampling interval to the mode frequency spacing even though individual mode linewidth is sufficiently narrow. Here, using a combination of a spectral interleaving and dual-comb spectroscopy in the terahertz (THz) region, we achieved a spectral sampling interval equal to the mode linewidth rather than the mode spacing. The spectrally interleaved THz comb was realized by sweeping the laser repetition frequency and interleaving additional frequency marks. In low-pressure gas spectroscopy, we achieved an improved spectral sampling density of 2.5 MHz and enhanced spectral accuracy of 8.39 × 10(-7) in the THz region. The proposed method is a powerful tool for simultaneously achieving high resolution, high accuracy, and broad spectral coverage in THz spectroscopy.

摘要

光学频率梳是用于宽带光谱学的创新工具,因为一系列梳状模式可以作为可追溯到微波频率标准的频率标记。然而,即使单个模式线宽足够窄,过于离散的模式分布也会将光谱采样间隔限制为模式频率间隔。在这里,通过结合太赫兹(THz)区域的光谱交织和双梳光谱学,我们实现了等于模式线宽而非模式间隔的光谱采样间隔。通过扫描激光重复频率并交织额外的频率标记,实现了光谱交织的太赫兹梳。在低压气体光谱学中,我们在太赫兹区域实现了2.5 MHz的改进光谱采样密度和8.39×10^(-7)的增强光谱精度。所提出的方法是在太赫兹光谱学中同时实现高分辨率、高精度和宽光谱覆盖的强大工具。

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