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首页> 外文期刊>Nature photonics >Real-time phase tracking for wide-band optical frequency measurements at the 20th decimal place
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Real-time phase tracking for wide-band optical frequency measurements at the 20th decimal place

机译:20次小数位宽带光学频率测量的实时相位跟踪

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Optical frequency measurements are among the most precise tools available to science. With the rapid advances in optical clocks now achieving a low 10(-17) stability at 1s and averaging down to the 10(-19) level in a few hundred seconds, real-time sensing of subtle phenomena becomes essential. To render possible such measurements, we introduce real-time optical phase tracking with ultra-low-noise frequency combs as a fundamental means to constantly monitor frequency offsets. This enables the characterization of optical frequency synthesis with stability and accuracy at the 20th decimal place within a measurement time of <100s. To enable comb operation at this level of performance, dichroic heterodyne detection is used to compensate phase drifts occurring in the generation and dissemination of widely spaced optical frequencies. We qualify an example set-up by comparison with a reference system, measuring an offset between two combs of (5.45.3)x10(-21) in one single measurement run of 1x10(5)s. By employing a Doppler cancellation technique, optical frequency synthesis is achieved with stability and accuracy in the 10(-20) range within 100s. An offset between two optical frequency combs phase-locked at 1,542 nm is obtained as 5.4x10(-21) at 1,063nm within 10(5) s.
机译:光学频率测量是科学最精确的工具之一。随着光学时钟的快速进步,现在在1S中实现低10(17)稳定性并在几百秒内平均到10(-19)水平,微妙现象的实时感测成为必不可少的。为了呈现可能的此类测量,我们将使用超低噪声频率梳理的实时光学相位跟踪作为持续监测频率偏移的基本手段。这使得能够在<100S的测量时间内以20位小数位的稳定性和精度表征光学频率合成。为了使梳理操作在这种性能水平,二向色杂差检测用于补偿在广泛间隔光学频率的产生和传播中发生的相位漂移。通过与参考系统进行比较,我们限定了一个示例设置,在1×10(5)秒的单个测量运行中,在一个单一测量运行中测量(5.45.3)X10(-21)的两个梳子之间的偏移量。通过采用多普勒消除技术,在100S内的10(-20)范围内的稳定性和精度实现光学频率合成。在10(5)秒内,在1,063nm处获得在1,542nm处锁定在1,542nm的两个光学频率磁体之间的偏移。

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