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The Pluto-Charon system as revealed during the mutual events.

机译:相互事件期间揭示的冥王星-夏隆系统。

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摘要

This year is the last of a five-year interval when the Earth passes through the orbital plane of Pluto and its satellite Charon, causing alternate transits and occultations of the satellite as seen from Earth. Spectrophotometric observations of the system made both in and out of eclipse have been obtained in the visual and near-infrared. The Pluto-Charon system is found to be compositionally diverse, a result unanticipated before the mutual events. Water frost has been identified and is ubiquitous on Charon's surface, while Pluto has a methane veneer. The spectral activity of Pluto's methane is seen to vary with rotational phase, i.e., planetary longitude. On Pluto, surface albedo appears to be correlated with composition. Dark regions tend to be redder and depleted in methane relative to bright regions. Dependence of geometric albedo with wavelength has been calculated for both bodies, from 0.4 to 2.4 {dollar}mu{dollar}m. The albedo model of Marcialis (1983, 1988) has emerged favorably after several severe tests.; Accurate radii and system bulk density derived from the mutual events have been used to construct models of phenomena unanticipated a decade ago. Charon's gravity is feeble enough that it could have shed a substantial primordial methane inventory to space and to Pluto, thereby explaining its different surface composition and lower albedo. Recent interior models are used to show that viscous relaxation of topography is expected to be significant on Pluto but not on Charon. Horizontal topographic features on the primary probably are limited in extent to less than a few tens of kilometers (or are geologically young), much as has been found subsequently for Triton. Globally, Pluto's figure is essentially hydrostatic.; Astrometric observations of the system are presented, as is evidence that the discovery of Charon just seven years before the initial mutual events was not fortuitous, but most probable. The astrometry will help to refine Pluto's orbit, making prediction of future stellar occultations by the system more reliable.
机译:今年是五年一次间隔的最后一年,这是地球经过冥王星及其卫星Charon的轨道平面时造成的,这是从地球上看时卫星的交替过境和掩星。在可见光和近红外光下都可以对日食和日食进行分光光度观察。发现冥王星-夏隆系统在组成上是多种多样的,这是在相互事件发生之前无法预料的结果。已经发现水霜并且在Charon的表面上无处不在,而冥王星有甲烷单板。冥王星的甲烷光谱活动随旋转相位(即行星经度)而变化。在冥王星上,表面反照率似乎与成分有关。相对于明亮区域,黑暗区域趋于变红和甲烷耗竭。已经计算出两个物体的几何反照率与波长的相关性,从0.4到2.4 {μm}μm{dollar} m。经过几次严格的试验,Marcialis(1983,1988)的反照率模型出现了。由相互事件得出的精确半径和系统体积密度已用于构建十年前未曾预料到的现象模型。 Charon的重力非常微弱,以至于它可能使大量的原始甲烷库存流向太空和冥王星,从而解释了其不同的表面组成和较低的反照率。最近的内部模型被用来显示地形的粘性松弛在冥王星上是显着的,但在Charon上却不显着。主要地形上的水平地形特征可能会限制在几十公里以内(或者在地质上还很年轻),这在后来的特里顿发现了很多。在全球范围内,冥王星的数字本质上是静水压力。提出了对该系统的星象学观测,并有证据表明,在最初的共同事件发生的前七年才发现了Charon并不是偶然的,而是最有可能的。天文测量将有助于完善冥王星的轨道,使该系统对未来恒星掩星的预测更加可靠。

著录项

  • 作者

    Marcialis, Robert Louis.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Physics Astronomy and Astrophysics.
  • 学位 Ph.D.
  • 年度 1990
  • 页码 108 p.
  • 总页数 108
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 天文学;
  • 关键词

  • 入库时间 2022-08-17 11:50:36

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