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A prominent geophysical feature along the northern Nevada rift and its geologic implications, north-central Nevada

机译:内华达中北部,内华达北部裂谷沿线的一个突出地球物理特征及其地质意义

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We consider the origin and character of a prominent large-scale geophysical feature in north-central Nevada that is coincident with the western margin of the northern Nevada rifta mid-Miocene rift that includes mafic dike swarms and associated volcanic rocks expressed by a NNW-striking magnetic anomaly. The geophysical feature also correlates with mid-Miocene epithermal gold deposits and is coincident with the central part of the Battle Mountaina€“Eureka mineral trend. The Reese River Valley, a 2-km-deep Cenozoic basin, is located along the western margin of this feature and is inferred from the inversion of gravity data to be influenced by, and perhaps in part structurally controlled by, the geophysical feature.Geophysical modeling indicates that the source of the geophysical anomaly must extend to mid-crustal depths, perhaps reflecting a transition from Paleozoic crust in the southwest to Precambrian crust in the northeast, the presence of felsic intrusive rocks in the middle crust, or the edge of mid- to sub-crustal mafic intrusions related to late Tertiary magmatic underplating associated with hotspot magmatism.These cases offer very different possibilities for the age, depth, and origin of the source of the geophysical anomaly, and they present distinct implications for crustal evolution in the northern Great Basin. For example, if the anomaly is due to a pre-Cenozoic basement structure, then its coincidence with the mid-Miocene northern Nevada rift suggests that the trend of the rift was guided by the pre-existing crustal structure. On the other hand, if the anomaly is related to Tertiary mafic intrusions, then the western limit of this magmatism may have been influenced by hotspot fracturing of the crust.
机译:我们考虑到内华达中北部一个突出的大规模地球物理特征的起源和特征,该特征与内华达北部利福塔中新世中裂的西缘相吻合,该裂谷包括基性岩脉群和由NNW打击表达的相关火山岩磁异常。地球物理特征还与中新世中期的超热金矿床有关,并且与巴特尔芒廷纳(Battle Mountaina)“尤里卡(Eureka)”矿物趋势的中心部分重合。里斯河谷(Reese River Valley)是一个2公里深的新生代盆地,位于该特征的西边缘,由重力数据的反演推论得出,重力数据的反演受地球物理特征的影响,也许在一定程度上受地球物理特征的控制。建模表明,地球物理异常的源必须延伸到地壳中部深度,这可能反映了从西南部的古生代地壳到东北部的前寒武纪地壳的过渡,中部地壳中存在长英质侵入性岩石或中部边缘。 -与与热点岩浆作用有关的第三纪晚期岩浆底板活动有关的亚地壳镁铁质侵入体,这些情况为地球物理异常源的年龄,深度和起源提供了非常不同的可能性,并且它们对地壳异常演化具有独特的意义。大盆地北部。例如,如果异常是由于前新生代基底结构引起的,那么它与中新世中部内华达北部裂谷的吻合表明该裂谷的趋势是由早已存在的地壳结构引导的。另一方面,如果异常与第三纪黑铁质侵入有关,那么该岩浆作用的西边界可能已经受到地壳热点破裂的影响。

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