光学色散光谱利用光频梳应用于双外差混频

SPIE OPTO Pub Date : 2016-03-16 DOI:10.1117/12.2212365
K. Kasuga, Takayuki Miyamoto, T. Shioda
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引用次数: 2

摘要

光色散可以从光频梳中相邻峰之间的相邻相对相位得到。因此,通过测量相对相位谱来测量色散成为可能。本课组利用阵列波导光栅平行捕获色散谱,实验证实了其工作原理。我们提出了一种双外差混合,通过拟合热强度和光程长度差的数据来获得相对相位(ΔΦ)。路径差由延迟线施加。在本研究中,我们通过去除延迟线来实现快速测量,通过同时测量三个相对相位,其路径长度差异对应于π / 2或π,我们已经以毫秒速度(250秒)测量了色散。一般来说,利用高速信号传输测量色散在材料性质分析和电信等基础科学研究中是有效的。然而,测量截止频率的限制是速度提高的限制。我们提出的在频域上观察它的方法对于高速信号处理是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optical dispersion spectroscopy using optical frequency comb applied to dual-heterodyne mixing
The optical dispersion can be obtained from the adjacent relative phase between neighbor peaks in the optical frequency comb. Thus, the dispersion measurement becomes possible by measuring the relative phase spectrum. Our group has experimentally confirmed the operation principle by parallel capturing of the dispersion spectrum using an arrayed waveguide grating. We have proposed a dual-heterodyne mixing that obtained relative phases (ΔΦ) by fitting data of beat intensity versus optical path length difference. The path difference was applied by a delay line. In this study, we removed the delay line to realize a fast measurement by measuring simultaneous three relative phases with path length differences corresponding to π⁄2 or π, with which we have measured the dispersion in millisecond speed (250 sec. in previous ). In general, it is effective to measured chromatic dispersion using high-speed signal transmission in the fundamental scientific research, such as the analysis of material properties and telecommunications. It is, however, that limit of cutoff frequency using measurement is the restriction on increasing of the speed. Our proposed method to observe it on a frequency domain is effective for the high-speed signal processing.
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