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6/12-channel synchronous digital phasemeter for ultrastable signal characterization and use

机译:用于超稳定信号表征和使用的6/12通道同步数字相位仪

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Nowadays, in primary time and frequency laboratories we can find high spectral purity signals in the 10 MHz - 10 GHz range generated from cryogenic oscillators or ultra-stable lasers together with frequency combs. Their short-term stability surpasses by one to two orders of magnitude the performances of active hydrogen masers (AHM), while in the long-term AHMs still have a better behavior. The new technology can be considered mature for what concern spectral purity, but we cannot say the same about complexity, power consumption and reliability. In this sense, it is important to measure ultra-stable sources with respect to AHMs. First, to test their spectral purity or, at least, to give it an upper bound; second to have a continuous monitoring; finally, to combine them in order to get the best of all in term of phase noise and frequency stability. All of these requirements can be satisfied by the system we are developing. It is a multi-channel synchronous and real-time phasemeter based on Tracking Direct Digital Synthesizer (TDDS) technique. The results related to the first prototype are presented.
机译:如今,在主要的时间和频率实验室中,我们可以找到由低温振荡器或超稳定激光器以及频率梳产生的10 MHz-10 GHz范围内的高光谱纯度信号。它们的短期稳定性超过了活性氢微波激射器(AHM)的性能的一到两个数量级,而长期而言,它们仍然具有更好的性能。对于频谱纯度而言,这项新技术可以说是成熟的,但是对于复杂性,功耗和可靠性我们不能说同样的话。从这个意义上讲,测量相对于AHM的超稳定光源非常重要。首先,测试其光谱纯度,或者至少给它一个上限;其次要进行持续监控;最后,将它们结合起来以获得相位噪声和频率稳定性方面的最佳效果。我们正在开发的系统可以满足所有这些要求。它是基于跟踪直接数字合成器(TDDS)技术的多通道同步实时相位计。提出了与第一个原型有关的结果。

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