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Fourier-transform spectroscopy using an Er-doped fiber femtosecond laser by sweeping the pulse repetition rate

机译:使用掺Er光纤飞秒激光通过扫描脉冲重复频率进行傅立叶变换光谱

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Femtosecond lasers allow for simultaneous detection of multiple absorption lines of a specimen over a broad spectral range of infrared or visible light with a single spectroscopic measurement. Here, we present an 8-THz bandwidth, 0.5-GHz resolution scheme of Fourier-transform spectroscopy using an Er-doped fiber femtosecond laser. A resolving power of 1.6?×?104 about a 1560-nm center wavelength is achieved by sweeping the pulse repetition rate of the light source on a fiber Mach-Zehnder interferometer configured to capture interferograms with a 0.02-fs temporal sampling accuracy through a well-stabilized 60-m unbalance arm length. A dual-servo mechanism is realized by combining a mechanical linear stage with an electro-optic modulator (EOM) within the fiber laser cavity, enabling stable sweeping control of the pulse repetition rate over a 1.0-MHz scan range with 0.4-Hz steps with reference to the Rb clock. Experimental results demonstrate that the P-branch lines of the H13CN reference cell can be observed with a signal-to-noise ratio reaching 350 for the most intense line.
机译:飞秒激光允许通过一次光谱测量同时检测在宽范围的红外或可见光光谱范围内的样品的多个吸收线。在这里,我们提出了使用掺Er光纤飞秒激光器的傅里叶变换光谱的8-THz带宽,0.5-GHz分辨率方案。通过在配置为捕获0.02干涉图的光纤Mach-Zehnder干涉仪上扫掠光源的脉冲重复频率,可获得大约1560 nm中心波长的1.6?×?10 4 的分辨力通过稳定的60米不平衡臂长度,可以达到-fs时间采样精度。通过将机械线性平台与光纤激光器腔内的电光调制器(EOM)组合在一起,实现了双伺服机制,从而能够以0.4 Hz的步进在1.0 MHz的扫描范围内对脉冲重复率进行稳定的扫描控制。参考Rb时钟。实验结果表明,可以观察到H 13 CN参考细胞的P分支线,最强线的信噪比达到350。

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