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古地磁学。在 Semarkona 陨石中记录的太阳星云磁场。

Paleomagnetism. Solar nebula magnetic fields recorded in the Semarkona meteorite.

机构信息

Department of Earth, Atmospheric and Planetary Sciences, Massachusetts Institute of Technology (MIT), Cambridge, MA, USA.

Department of Earth Sciences, University of Cambridge, Cambridge, UK.

出版信息

Science. 2014 Nov 28;346(6213):1089-92. doi: 10.1126/science.1258022. Epub 2014 Nov 13.

Abstract

Magnetic fields are proposed to have played a critical role in some of the most enigmatic processes of planetary formation by mediating the rapid accretion of disk material onto the central star and the formation of the first solids. However, there have been no experimental constraints on the intensity of these fields. Here we show that dusty olivine-bearing chondrules from the Semarkona meteorite were magnetized in a nebular field of 54 ± 21 microteslas. This intensity supports chondrule formation by nebular shocks or planetesimal collisions rather than by electric currents, the x-wind, or other mechanisms near the Sun. This implies that background magnetic fields in the terrestrial planet-forming region were likely 5 to 54 microteslas, which is sufficient to account for measured rates of mass and angular momentum transport in protoplanetary disks.

摘要

磁场被认为在行星形成的一些最神秘的过程中发挥了关键作用,通过调节盘物质快速吸积到中央恒星上和最初固体的形成。然而,这些磁场的强度还没有实验限制。在这里,我们表明 Semarkona 陨石中的含尘橄榄石陨石球粒在星云场中被磁化到 54±21 微特斯拉。这个强度支持陨石球粒通过星云激波或行星际碰撞形成,而不是通过太阳附近的电流、x 风或其他机制形成。这意味着在地球行星形成区域的背景磁场可能在 5 到 54 微特斯拉之间,这足以解释在原行星盘中测量到的质量和角动量输运速率。

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