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Frequency-noise measurements of optical frequency combs by multiple fringe-side discriminator

机译:利用多个边缘侧鉴别器测量光学频率梳的噪声

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摘要

The frequency noise of an optical frequency comb is routinely measured through the hetherodyne beat of one comb tooth against a stable continuous-wave laser. After frequency-to-voltage conversion, the beatnote is sent to a spectrum analyzer to retrive the power spectral density of the frequency noise. Because narrow-linewidth continuous-wave lasers are available only at certain wavelengths, heterodyning the comb tooth can be challenging. We present a new technique for direct characterization of the frequency noise of an optical frequency comb, requiring no supplementary reference lasers and easily applicable in all spectral regions from the terahertz to the ultraviolet. The technique is based on the combination of a low finesse Fabry-Perot resonator and the so-called “fringe-side locking” method, usually adopted to characterize the spectral purity of single-frequency lasers, here generalized to optical frequency combs. The effectiveness of this technique is demonstrated with an Er-fiber comb source across the wavelength range from 1 to 2 μm.
机译:光学频率梳的频率噪声通常是通过一个梳齿的内差拍对稳定的连续波激光器测量的。在频率到电压转换之后,将节拍音符发送到频谱分析仪,以检索频率噪声的功率谱密度。由于窄线宽连续波激光器仅在某些波长下可用,因此使梳齿杂化可能是一个挑战。我们提出了一种直接表征光学频率梳频率噪声的新技术,不需要辅助参考激光器,并且很容易应用于从太赫兹到紫外光的所有光谱区域。该技术基于低精细Fabry-Perot谐振器和所谓的“边缘侧锁定”方法的组合,通常采用这种方法来表征单频激光器的光谱纯度,这里将其概括为光学频率梳。 an纤维梳状光源在1至2μm的整个波长范围内均证明了该技术的有效性。

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