论文标题

潮汐和冰冷身体的潮汐见解:介绍和概述

Tidal insights into rocky and icy bodies: An introduction and overview

论文作者

Bagheri, Amirhossein, Efroimsky, Michael, Castillo-Rogez, Julie, Goossens, Sander, Plesa, Ana-Catalina, Rambaux, Nicolas, Rhoden, Alyssa, Walterová, Michaela, Khan, Amir, Giardini, Domenico

论文摘要

固体潮汐提供了有关行星体的内部结构,演变和起源的关键信息。我们的太阳系拥有大量的行星体,包括由岩石,冰,气或所有混合物组成的行星体。虽然已经开发了多年来的地球物理方法库来推断地球内部的知识,但研究其他太阳系体室内体的工具清单仍然有限。借助仅适用于地球,月球和火星的地震数据,包括观察潮汐反应在内的大地测量已变得特别有价值,因此在理解几个太阳系身体的内部和历史方面发挥了重要作用。要使用潮汐响应测量作为对行星体内部结构的限制的一种手段,需要适当了解需要形成行星的材料的粘弹性反应。在这里,我们回顾了潮汐建模的基本方面以及有关当今内部特性的信息以及基于研究其潮汐反应的几个行星和卫星的演变。我们从粘弹性和潮汐反应理论的概述开始。接下来,我们通过讨论有关潮汐响应的信息以及汞,金星,火星及其卫星,月球和最大的巨型行星卫星的推断结构,这些信息是从空间任务提供的数据的分析中获得的。我们还总结了目前计划的任务即将提供的可能性。

Solid body tides provide key information on the interior structure, evolution, and origin of the planetary bodies. Our Solar system harbours a very diverse population of planetary bodies, including those composed of rock, ice, gas, or a mixture of all. While a rich arsenal of geophysical methods has been developed over several years to infer knowledge about the interior of the Earth, the inventory of tools to investigate the interiors of other Solar-system bodies remains limited. With seismic data only available for the Earth, the Moon, and Mars, geodetic measurements, including the observation of the tidal response, have become especially valuable and therefore, has played an important role in understanding the interior and history of several Solar system bodies. To use tidal response measurements as a means to obtain constraints on the interior structure of planetary bodies, appropriate understanding of the viscoelastic reaction of the materials from which the planets are formed is needed. Here, we review the fundamental aspects of the tidal modeling and the information on the present-day interior properties and evolution of several planets and moons based on studying their tidal response. We begin with an outline of the theory of viscoelasticity and tidal response. Next, we proceed by discussing the information on the tidal response and the inferred structure of Mercury, Venus, Mars and its moons, the Moon, and the largest satellites of giant planets, obtained from the analysis of the data that has been provided by space missions. We also summarise the upcoming possibilities offered by the currently planned missions.

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