Caldwell Emily D, Swann William C, Ellis Jennifer L, Bodine Martha I, Mak Carter, Kuczun Nathan, Newbury Nathan R, Sinclair Laura C, Muschinski Andreas, Rieker Gregory B
Opt Express. 2020 Aug 31;28(18):26661-26675. doi: 10.1364/OE.400434.
During propagation through atmospheric turbulence, variations in the refractive index of air cause fluctuations in the time-of-flight of laser light. These timing jitter fluctuations are a major noise source for precision laser ranging, optical time transfer, and long-baseline interferometry. While there exist models that estimate the turbulence-induced timing jitter power spectra using parameters obtainable from conventional micrometeorological instruments, a direct and independent comparison of these models to measured timing jitter data has not been done. Here we perform this comparison, measuring turbulence-induced optical pulse timing jitter over a horizontal, near-ground path using frequency comb lasers while independently characterizing the turbulence along the path using a suite of micrometeorological sensors. We compare the power spectra of measured optical pulse timing jitter to predictions based on the measured micrometeorological data and standard turbulence theory. To further quantitatively compare the frequency comb data to the micrometeorological measurements, we extract and compare the refractive index structure parameter, Cn2, from both systems and find agreement to within a factor of 5 for wind speed >1 m/s, and further improvement is possible as wind speed increases. These results validate the use of conventional micrometeorological instruments in predicting optical timing jitter statistics over co-located laser beam paths.
在通过大气湍流传播过程中,空气折射率的变化会导致激光飞行时间的波动。这些定时抖动波动是精密激光测距、光学时间传递和长基线干涉测量的主要噪声源。虽然存在一些模型,它们利用可从传统微气象仪器获得的参数来估计湍流引起的定时抖动功率谱,但尚未对这些模型与实测定时抖动数据进行直接且独立的比较。在此,我们进行了这种比较,使用频率梳激光器在水平近地面路径上测量湍流引起的光脉冲定时抖动,同时使用一套微气象传感器独立表征沿路径的湍流。我们将实测光脉冲定时抖动的功率谱与基于实测微气象数据和标准湍流理论的预测进行比较。为了进一步定量比较频率梳数据与微气象测量结果,我们从两个系统中提取并比较折射率结构参数Cn2,发现对于风速>1 m/s,两者的一致性在5倍以内,并且随着风速增加,一致性可能会进一步提高。这些结果验证了在预测共址激光束路径上的光学定时抖动统计时使用传统微气象仪器的可行性。