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Determining the Depth of Jupiter's Great Red Spot with Juno: A Slepian Approach

机译:用朱诺确定木星的伟大红斑的深度:一种绞线方法

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摘要

One of Jupiter's most prominent atmospheric features, the Great Red Spot (GRS), has been observed for more than two centuries, yet little is known about its structure and dynamics below its observed cloud level. While its anticyclonic vortex appearance suggests it might be a shallow weather-layer feature, the very long time span for which it was observed implies it is likely deeply rooted, otherwise it would have been sheared apart by Jupiter's turbulent atmosphere. Determining the GRS depth will shed light not only on the processes governing the GRS, but on the dynamics of Jupiter's atmosphere as a whole. The Juno mission single flyby over the GRS (PJ7) discovered using microwave radiometer measurements that the GRS is at least a couple hundred kilometers deep. The next flybys over the GRS (PJ18 and PJ21), will allow high-precision gravity measurements that can be used to estimate how deep the GRS winds penetrate below the cloud level. Here we propose a novel method to determine the depth of the GRS based on the new gravity measurements and a Slepian function approach that enables an effective representation of the wind-induced spatially confined gravity signal, and an efficient determination of the GRS depth given the limited measurements. We show that with this method the gravity signal of the GRS should be detectable for wind depths deeper than 300 km, with reasonable uncertainties that depend on depth (e.g., ±100 km for a GRS depth of 1000 km).
机译:Jupiter最突出的大气特征之一,伟大的红点(GRS)已被观察到超过两个世纪以来,但其结构和动态几乎是知之甚少,其观察到的云水平低。虽然其反气旋涡旋外观表明它可能是浅气象层特征,但观察到的时间跨度暗示它可能深深植根,否则它将被木星的湍流大气分开剪切。确定GRS深度不仅将阐明GRS的过程,而是在JUPITER的整体的动态上。 juno任务单蝇通过微波辐射计测量发现GRS(PJ7),即GRS至少几百公里。在GRS(PJ18和PJ21)上的下一个Flybys将允许高精度的重力测量,这些重力测量可用于估计GRS风渗透在云水平以下的深度。在这里,我们提出了一种新的方法来基于新的重力测量来确定GRS的深度和一种绞线功能方法,其能够有效地表示风引起的空间限制重力信号,以及给出限制的GRS深度的有效确定测量。我们认为,通过这种方法,GRS的重力信号应该可检测到深度比300 km更深的风深,具有合理的不确定性,依赖于深度(例如,±100km为1000 km的±100km)。

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