首页> 外文期刊>Journal of geophysical research. Planets >Hazy Blue Worlds: A Holistic Aerosol Model for Uranus and Neptune, Including Dark Spots
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Hazy Blue Worlds: A Holistic Aerosol Model for Uranus and Neptune, Including Dark Spots

机译:朦胧的蓝色世界:天王星和海王星的整体气溶胶模型,包括黑点

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We present a reanalysis (using the Minnaert limb-darkening approximation) of visible/nearinfrared (0.3-2.5 μm) observations of Uranus and Neptune made by several instruments. We find a common model of the vertical aerosol distribution i.e., consistent with the observed reflectivity spectra of both planets, consisting of: (a) a deep aerosol layer with a base pressure >5-7 bar, assumed to be composed of a mixture of H_2S ice and photochemical haze; (b) a layer of photochemical haze/ice, coincident with a layer of high static stability at the methane condensation level at 1-2 bar; and (c) an extended layer of photochemical haze, likely mostly of the same composition as the 1-2-bar layer, extending from this level up through to the stratosphere, where the photochemical haze particles are thought to be produced. For Neptune, we find that we also need to add a thin layer of micron-sized methane ice particles at ~0.2 bar to explain the enhanced reflection at longer methane-absorbing wavelengths. We suggest that methane condensing onto the haze particles at the base of the 1-2-bar aerosol layer forms ice/haze particles that grow very quickly to large size and immediately "snow out" (as predicted by Carlson et al. (1988), https://doi.org/10.1175/1520-0469(1988)0452.0.CO;2), re-evaporating at deeper levels to release their core haze particles to act as condensation nuclei for H_2S ice formation. In addition, we find that the spectral characteristics of "dark spots", such as the Voyager-2/ISS Great Dark Spot and the HST/WFC3 NDS-2018, are well modelled by a darkening or possibly clearing of the deep aerosol layer only.
机译:我们提出了可见的/近红外(0.3-2.5μm)对天王星和海王星的观测值(使用Minnaert肢体变形近似)的重新分析(使用Minnaert肢体变形近似)。我们发现垂直气溶胶分布的一个共同模型,即与观察到的两个行星的反射率一致,该模型由:(a)具有碱基压> 5-7 bar的深气溶胶层组成,假定由混合物组成。 H_2S冰和光化学雾霾; (b)一层光化学雾化/冰,一致在1-2 bar的甲烷冷凝水平上具有高静态稳定性; (c)延长的光化学雾化层,可能与1-2杆层相同,从该水平延伸到平流层,在该水平上一直延伸到平流层,在该水平上,光化学雾化的雾化颗粒被认为是产生的。对于Neptune,我们发现我们还需要在〜0.2 bar上添加一层薄薄的微米大小的甲烷冰颗粒,以解释在更长的甲烷吸收波长下增强反射。我们建议甲烷凝结在1-2杆气溶胶层底部的雾剂颗粒上,形成冰/雾颗粒,它们生长非常快到大尺寸,并立即“降雪”(如Carlson等人所预测的那样)。 ,,https://doi.org/10.1175/1520-0469(1988)045 2.0.co; 2),在更深层次上重新散发以释放其核心雾haze颗粒,以充当H_2S Ice nuclei nuclei nuclei形成。此外,我们发现“黑点”的光谱特性,例如Voyager-2/ISS Great Dark Spot和HST/WFC3 NDS-2018,仅通过深色或可能仅清除深气溶胶层来很好地建模。

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  • 来源
    《Journal of geophysical research. Planets》 |2022年第6期|2022JE007189-1-2022JE007189-44|共44页
  • 作者单位

    Department of Physics, University of Oxford, Oxford, UK;

    School of Earth Sciences, University of Bristol, Bristol, UK;

    School of Physics & Astronomy, University of Leicester, Leicester, UKInstituto Nacional de Técnica Aeroespacial (INTA), Madrid, SpainJet Propulsion Laboratory, California Institute of Technology, Pasadena, CA, USACenter for Integrative Planetary Science, University of California, Berkeley, CA, USAUniversity of the Basque Country UPV/EHU, Bilbao, Spain;

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