首页> 外文期刊>The Mountain Geologist >New U-Pb Zircon and ~(40)Ar/~(39)Ar Age Constraints on the Late Mesozoic to Cenozoic Plutonic Record in the Western San Juan Mountains~1
【24h】

New U-Pb Zircon and ~(40)Ar/~(39)Ar Age Constraints on the Late Mesozoic to Cenozoic Plutonic Record in the Western San Juan Mountains~1

机译:西圣胡安山中新生代晚新生代U-Pb锆石和〜(40)Ar /〜(39)Ar年龄约束

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

New U-Pb zircon and ~(40)Ar/~(39)Ar crystallization ages for latest Mesozoic to Cenozoic plutonic rocks in the western San Juan Mountains provide insight into the timing and interplay of mantle and crustal magmatism over the past 80 Ma. Subduction-driven magmatism in the Laramide (75-60 Ma) generated alkalic intermediate to mafic magmas. These were emplaced as laccoliths and stocks along northeast trends that were likely controlled by crustal-scale zones of weakness with Proterozoic ancestry. The transition from Laramide subduction to slab rollback and delamination was marked by incipient regional extension and widespread emplacement of plutons. Oligocene plutons of gabbro to granite were mostly peripheral to 29-27 Ma caldera complexes that formed over a regional subvolcanic batholith. Alkaline mantle magmas that accompanied the semi-continuous intrusion of shallow felsic to intermediate plutons from 25 to 4 Ma produced diatreme-dike complexes and dike swarms across the northern San Juan Basin. Emplacement of plutons from 75-4 Ma caused localized uplift that had a major influence on landscape evolution, and often were linked to zones of mineralization. Late Mesozoic to Cenozoic plutonic events in the western San Juan Mountains record a long-term shift to more bimodal magmatism. Injection of mantle melts from 25 to 4 Ma during incipient crustal extension accompanied elevated thermal gradients over the region, as evidenced by resetting of cooling ages in some Laramide intrusive rocks. The preservation of xenocrystic zircons in 75-4 Ma plutonic rocks provides evidence for variable magmatic conditions with an overall increase in the thermal state of Oligocene melts proximal to caldera systems and all plutons emplaced after 18 Ma. High geothermal gradients caused by the long duration of magmatism and increased mantle contributions may have permitted more prolonged assembly and slower cooling in some plutons.
机译:新的U-Pb锆石和〜(40)Ar /〜(39)Ar结晶年龄是圣胡安山脉西部中生代至新生代深成岩的最新年龄,提供了有关过去80 Ma地幔和地壳岩浆作用的时间和相互作用的见解。拉拉米德(75-60 Ma)中俯冲驱动的岩浆作用形成了镁铁质岩浆的碱性中间产物。这些是沿着东北趋势放置的石器和储层,可能是由元古代的地壳规模的薄弱带控制的。从Laramide俯冲到平板回滚和分层的过渡,其特征是初期的区域扩展和lut的广泛安置。辉长岩到花岗岩的渐新世俯冲体大部分位于29-27 Ma火山口复合体的外围,该复合体形成于一个区域火山下岩床之上。碱性地幔岩浆伴随着浅长相向25Ma至4Ma的中等岩体的半连续侵入,产生了整个San Juan盆地的diatreme-dike复合体和堤防群。从75-4 Ma的Pluton进位引起局部隆起,这对景观演化有重大影响,并且通常与矿化带有关。西圣胡安山脉中晚生代至新生代的古生代事件记录了向双峰岩浆作用的长期转变。在最初的地壳伸展过程中,注入的地幔熔体从25Ma到4Ma伴随着整个区域温度梯度的升高,这在某些Laramide侵入岩中冷却年龄的重新设定中得到了证明。异晶锆石在75-4 Ma的深成岩中的保存提供了可变岩浆条件的证据,渐新世熔体的热态总体增加了靠近破火山口系统,并且所有深成岩在18 Ma之后就位了。由岩浆作用的持续时间长和地幔贡献增加引起的高地热梯度可能使某些岩体的组装时间更长,冷却速度更慢。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号