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Solar journey: The significance of our galactic environment for the heliosphere and earth

机译:太阳之旅:我们的银河环境对太阳系和地球的意义

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摘要

Humans evolved when the Sun was in the great void of the Local Bubble. The Sun entered the present environment of interstellar clouds only during the late Quaternary. Astronomical data reveal these long and short term changes in our galactic environment. Theoretical models then tell us how these changes affect interplanetary particles, planetary magnetospheres, and the Earth itself. Cosmic rays leave an isotopic signature in the paleoclimate record that helps trace the solar journey through space. "Solar Journey: The Significance of Our Galactic Environment for the Heliosphere and Earth" lays the foundation for an interdisciplinary study of the influence of interstellar material on the solar system and Earth as we travel through the Milky Way Galaxy. The solar wind bubble responds dynamically to interstellar material flowing past the Sun, regulating interstellar gas, dust, and cosmic particle fluxes in the interplanetary medium and the Earth. Cones of interstellar gas and dust focused by solar gravity, the magnetospheres of the outer planets, and cosmic rays at Earth all might yield the first hints of changes in our galactic environment. Twelve articles from leading experts in diverse fields discuss the physical changes expected as the heliosphere adjusts to its galactic environment. Topics include the interaction between the solar wind and interstellar dust and gas, cosmic ray modulation, magnetospheres, temporal variations in the solar environment, and the cosmic ray isotope record preserved in paleoclimate data. The breadth of processes discussed in this book make it a valuable resource for scientists and students doing research in the fields of Space Physics, Astronomy and the Paleoclimate.
机译:当太阳处于局部气泡的巨大空白中时,人类便进化了。太阳仅在第四纪晚期才进入星际云的当前环境。天文学数据揭示了我们银河环境中的这些长期和短期变化。理论模型然后告诉我们这些变化如何影响行星际粒子,行星磁层和地球本身。宇宙射线在古气候记录中留下了同位素特征,有助于追踪太阳穿过太空的历程。 “太阳之旅:我们银河环境对太阳系和地球的意义”为跨学科研究星际物质对我们穿越银河系的太阳系和地球的影响奠定了基础。太阳风气泡对流经太阳的星际物质做出动态响应,调节星际气体,尘埃和行星际介质和地球中的宇宙粒子通量。由太阳引力引起的星际气体和尘埃的锥体,外行星的磁层以及地球上的宇宙射线都可能产生我们银河环境变化的最初迹象。来自不同领域的领先专家的12篇文章讨论了随着日光层适应其银河环境而预期发生的物理变化。主题包括太阳风与星际尘埃和气体之间的相互作用,宇宙射线调制,磁层,太阳环境的时间变化以及保存在古气候数据中的宇宙射线同位素记录。本书讨论的过程的广度使其成为在空间物理学,天文学和古气候领域进行研究的科学家和学生的宝贵资源。

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    Frisch, Priscilla C;

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  • 年度 2006
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