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Longitudinal variability in Jupiter's zonal winds derived from multi-wavelength HST observations

机译:来自多波长HST观测值的木星纬向风的纵向变化

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Multi-wavelength Hubble Space Telescope (HST) images of Jupiter from the Outer Planets Atmospheres Legacy (OPAL) and Wide Field Coverage for Juno (WFCJ) programs in 2015, 2016, and 2017 are used to derive wind profiles as a function of latitude and longitude. Wind profiles are typically zonally averaged to reduce measurement uncertainties. However, doing this destroys any variations of the zonal-component of winds in the longitudinal direction. Here, we present the results derived from using a “sliding-window” correlation method. This method adds longitudinal specificity, and allows for the detection of spatial variations in the zonal winds. Spatial variations are identified in two jets: 1 at 17°N, the location of a prominent westward jet, and the other at7°S, the location of the chevrons. Temporal and spatial variations at the 24°N jet and the 5-μm hot spots are also examined.
机译:2015年,2016年和2017年来自外行星大气遗留力(OPAL)和朱诺的宽视场覆盖(WFCJ)计划的木星多波长哈勃太空望远镜(HST)图像用于得出风廓线与纬度和经度。通常对风廓线进行区域平均,以减少测量的不确定性。但是,这样做会破坏风的纵向分量在纵向上的任何变化。在这里,我们介绍使用“滑动窗口”相关方法得出的结果。这种方法增加了纵向特异性,并允许检测纬向风中的空间变化。在两个喷口中发现了空间变化:1°at 17°N,一个突出的向西喷口的位置,另一个在7°S,人字形的位置。还检查了24°N射流和5μm热点处的时空变化。

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