首页> 外文期刊>Journal of geophysical research. Planets >Magnetic anomalies in the Imbrium and Schr?dinger impact basins: Orbital evidence for persistence of the lunar core dynamo into the Imbrian epoch
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Magnetic anomalies in the Imbrium and Schr?dinger impact basins: Orbital evidence for persistence of the lunar core dynamo into the Imbrian epoch

机译:Imbrium和Schr dinger冲击盆地中的磁异常:轨道证据表明月球核心发电机持续进入伊姆布里亚时代

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摘要

Approximate maps of the lunar crustal magnetic field at low altitudes in the vicinities of the three Imbrian-aged impact basins, Orientale, Schr?dinger, and Imbrium, have been constructed using Lunar Prospector and Kaguya orbital magnetometer data. Detectable anomalies are confirmed to be present well within the rims of Imbrium and Schr?dinger. Anomalies in Schr?dinger are asymmetrically distributed about the basin center, while a single isolated anomaly is most clearly detected within Imbrium northwest of Timocharis crater. The subsurface within these basins was heated to high temperatures at the time of impact and required long time periods (up to 1 Myr) to cool below the Curie temperature for metallic iron remanence carriers (1043 K). Therefore, consistent with laboratory analyses of returned samples, a steady, long-lived magnetizing field, i.e., a former core dynamo, is inferred to have existed when these basins formed. The asymmetrical distribution within Schr?dinger suggests partial demagnetization by later volcanic activity when the dynamo field was much weaker or nonexistent. However, it remains true that anomalies within Imbrian-aged basins are much weaker than those within most Nectarian-aged basins. The virtual absence of anomalies within Orientale where impact melt rocks (the Maunder Formation) are exposed at the surface is difficult to explain unless the dynamo field was much weaker during the Imbrian period.
机译:使用Lunar Prospector和Kaguya Orbital Magnetometer数据构建了三个Imbrian衰老撞击盆地的低海拔地区的月球地壳磁场的近似地图。可检测到的异常被证实在Imbrium和Schr dinger的边缘内很好地存在。 Schr?dinger中的异常是在盆地中心周围不对称的,而在Timocharis Crater西北部的Imbrium中,最清楚地检测到了单个孤立的异常。在撞击时,将这些盆地内的地下加热至高温,并需要长时间(最多1 Myr)以低于库丽温度以使金属铁恢复载体(1043 K)冷却。因此,与返回样品的实验室分析相一致,这是一个稳定的,长期寿命的磁化场,即以前的核心发电机,当这些盆地形成时就存在。 Schr dinger内的不对称分布表明,当发电机场较弱或不存在时,以后的火山活性通过后来的火山活性进行了反对。然而,确实是,伊姆布里亚时代盆地内部的异常比大多数幼稚的盆地中的异常弱得多。在东方内部,在地表上暴露了冲击熔体(Maunder形成)的东方无异常,除非在伊姆布里时期发电机场要弱得多,否则很难解释。

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