论文标题
使用轨道并保持放大器来改善基于梳子的频率测量的分辨率
Improving the resolution of comb-based frequency measurements using a track and hold amplifier
论文作者
论文摘要
在低1x10 $^{ - 18} $中具有最终不确定性的光学频率标准的出现需要飞秒频率梳子,以支持光谱传输中相似的分辨率和光学频率比的计算。相关的实验挑战与要同时测量的光学频率的数量一起增加,因为在许多情况下,梳子的光学功率不允许在所有感兴趣的光谱区域中可靠的beatnote计数或跟踪。在这里,我们描述了轨道和持有的放大器实现门控检测的使用,这是一种先前提出的技术,用于改善频率梳子低功率齿和连续波激光器之间的击打词的信噪比。与传统的检测方案相比,我们证明了涉及宽带跨界光学梳的手机的信噪比的12dB改善。我们的方法实现了可靠和无循环的光谱纯度传递,并降低了梳状光谱中功率下降的系统敏感性。它基于单个芯片,它是强大的,多功能的,并且很容易嵌入更复杂的实验方案中。关键字:频率梳子,光谱纯度传递,门控检测,跟踪和保持放大器。
The advent of optical frequency standards with ultimate uncertainties in the low 1x10$^{-18}$ requires femtosecond frequency combs to support a similar level of resolution in the spectral transfer and the computation of optical frequency ratios. The related experimental challenges grow together with the number of optical frequencies to be measured simultaneously, as in many cases the comb's optical power does not allow reliable beatnote counting or tracking in all the spectral regions of interest. Here we describe the use of a track-and-hold amplifier to implement the gated detection, a previously proposed technique for improving the signal-to-noise ratio of the beatnote between a low-power tooth of the frequency comb and a continuous wave laser. We demonstrate a 12dB improvement in the signal-to-noise ratio of beatnotes involving a broadband-spanning optical comb as compared to traditional detection schemes. Our approach enables reliable and cycle-slip-free spectral purity transfer and reduces the system sensitivity to power drops in the comb spectrum. Being based on a single chip, it is robust, versatile and easily embedded in more complex experimental schemes. Keywords: frequency comb, spectral purity transfer, gated detection, track and hold amplifier.