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The meteoroid environment and impacts on Phobos

机译:流星体环境及其对火卫一的影响

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摘要

We review current knowledge of the flux of meteoroids on Phobos, a key to interpreting its cratering record and understanding the origin of the Martian satellite system. Past observational attempts to estimate the flux of small (mm to cm) meteoroids as meteors in the Martian atmosphere highlight the need for customised instrumentation onboard future missions bound for Mars. The temporal distribution of cometary meteoroid streams as predicted by recent work is non-uniform; we advocate emplacing seismic stations on Phobos or cameras optimised to monitor the Martian atmosphere for meteors as a means to elucidate this and other features of the meteoroid population. We construct a model of the sporadic flux of metre-sized or larger meteoroids and use it to predict a leading/trailing ratio in crater density of ~ 4 if crater production by asteroidal meteoroids dominates over that by cometary ones. It is found that the observed distribution of craters ≥100m as determined from spacecraft images is consistent with a 50/50 contribution from the two meteoroid populations in our model. A need for more complete models of the meteoroid flux is identified. Finally, the prospects for new observational constraints on the meteoroid environment are reviewed.
机译:我们回顾了有关流星体流星体通量的最新知识,这是解释其陨石坑记录和了解火星卫星系统起源的关键。过去的观测尝试估计小(毫米至厘米)流星体在火星大气中的流星的通量,突显了在前往火星的未来飞行任务中需要定制化仪器的需求。根据最近的工作预测,彗星流的时间分布是不均匀的。我们主张在火卫一上安装地震台,或在经过优化以监控流星火星大气的摄像机上安装流星雨,以此来阐明流星体的这一特征和其他特征。我们构建了一个米级或更大型流星体零星通量的模型,如果小行星流星体产生的陨石坑比彗星流星产生的陨石坑要占主导地位,我们可以用它来预测陨石坑密度的领先/尾随比约为4。发现从航天器图像确定的观测到的陨石坑≥100m的分布与我们模型中两个流星体种群的50/50贡献一致。确定了对流星通量更完整模型的需求。最后,回顾了对流星环境的新观测约束的前景。

著录项

  • 来源
    《Planetary and space science 》 |2014年第11期| 164-170| 共7页
  • 作者单位

    Armagh Observatory, College Hill, Armagh BT61 9DG, Northern Ireland, UK;

    German Aerospace Centre, Institute of Planetary Research, Rutherfordstrasse 2, D-12489 Berlin, Germany,Technische Universitaet Berlin, Institute for Geodesy and Geoinformation Science, Planetary Geodesy, Strasse des 17. Juni 135, 10623 Berlin, Germany;

    Moscow State University for Geodesy and Cartography, Extraterrestrial Laboratory, 4, Gorokchovsky pereulok, 105064 Moscow, Russia;

    Moscow State University for Geodesy and Cartography, Extraterrestrial Laboratory, 4, Gorokchovsky pereulok, 105064 Moscow, Russia;

    Finnish Geodetic Institute, Department of Remote Sensing and Photogrammetry, Geodeetinrinne 2, P.O. Box 15, FI-02431 Masala, Finland,Ural Federal University, Institute of Physics and Technology, Department of Physical Methods and Devices for Quality Control, Mira ul. 19, 620002 Ekaterinburg, Russia,Russian Academy of Sciences, Dorodnicyn Computer Centre, Department of Computational Physics, Vavilova ul. 40, 119333 Moscow, Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Meteoroids; Phobos; Impact cratering; Comets; Asteroids;

    机译:流星体;火卫一;撞击坑彗星;小行星;

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