首页> 外文期刊>The American mineralogist >Shock-induced P-T conditions and formation mechanism of akimotoite-pyroxene glass assemblages in the Grove Mountains (GRV) 052082 (L6) meteorite
【24h】

Shock-induced P-T conditions and formation mechanism of akimotoite-pyroxene glass assemblages in the Grove Mountains (GRV) 052082 (L6) meteorite

机译:在树丛山(GRV)052082(L6)陨石中,抗辐射诱导的P-T条件和形成机制 - 镁岩玻璃组合物(GRV)052082(L6)陨石

获取原文
获取原文并翻译 | 示例
           

摘要

Akimotoite [(Mg,Fe)SiO3-ilmenite] was encountered in shock-induced melt veins of Grove Mountains (GRV) 052082, a highly equilibrated low iron ordinary chondritic meteorite (L6). Coexistence of ringwoodite, majorite, and majorite-pyrope solid solution indicates the shock pressure at 18-23 GPa and temperature of 2000-2300 degrees C during the natural dynamic event. Most low-Ca pyroxene clasts entrained in the melt veins have been partially or entirely transformed into akimotoite-pyroxene glass assemblages, which contain micrometer-sized areas with various brightness in the backscattered electron images, different from the chemically homogeneous grains in the host-rock (Fs(20.5-21.3)). The transmission electron microscopy study of a focused ion beam (FIB) slice from the heterogeneous areas shows that the assemblages are composed of FeO-depleted and heterogeneous akimotoite (Fs(6-19)) crystals (100 nm up to 400 nm in size) scattered in FeO-enriched and relatively homogeneous pyroxene glass (Fs(31-39)). All analyses of the akimotoite-pyroxene glass assemblages plot on a fractionation line in FeO-MgO diagram, with the host-rock pyroxene at the middle between the compositions of FeO-depleted akimotoite and the FeO-enriched pyroxene glass. These observations are different from previous reports of almost identical compositions of akimotoite, bridgmanite [(Mg,Fe)SiO3-perovskite], or pyroxene glass to the host rock pyroxene (Chen et al. 2004; Ferroir et al. 2008; Ohtani et al. 2004; Tomioka and Fujino 1997), which is consistent with solid-state transformation from pyroxene to akimotoite and preexisting bridgmanite that could be vitrified. The observed fractionation trend and the granular shapes of akimotoite suggest crystallization from liquid produced by shock melting of the host-rock pyroxene, and the pyroxene glass matrix was probably quenched from the residual melt. However, this interpretation is inconsistent with the static experiments that expect crystallization of majorite [(Mg,Fe)SiO3-garnet], instead of akimotoite, from pyroxene liquid (Sawamoto 1987). Our discovery raises the issue on formation mechanisms of the high-pressure polymorphs of pyroxene and places additional constraints on the post-shock high-pressure and high-temperature conditions of asteroids.
机译:Akimotoite [(Mg,Fe)SiO3-Ilmenite]在次触发山脉(GRV)052082,一种高度平衡的低铁普通的软骨陨石(L6)中遇到了抗冲击诱导的熔体静脉。 Ringwoodite,MayerAite和Migesite-Pyrope固体溶液的共存表示自然动态事件期间18-23 GPA和2000-2300摄氏度的温度下的冲击压力。夹带在熔融静脉中的大多数低Ca辉石夹层已经部分或完全转化为Akimotoite-辉石玻璃组合,其在背散射电子图像中包含微米尺寸的区域,其不同于主体岩石中的化学均匀颗粒(FS(20.5-21.3))。来自异质区域的聚焦离子束(FIB)切片的透射电子显微镜研究表明,组装由Feo耗尽和非均相Akimotoite(Fs(6-19))晶体(100nm尺寸为400nm)分散在FOO富集和相对均匀的辉石玻璃(FS(31-39))中。在FeO-MgO图中的分馏线上的Akimotoite-辉石玻璃组合图的全部分析,中间的宿主岩石甘油在Feo耗尽的akimotoite和FeO-富集的辉石玻璃之间。这些观察结果与先前的Akimotoite,Bridgmanite [(Mg,Fe)SiO3-perovskite]或粉红素玻璃的先前报道与宿主岩石甘黄甘油(Chen等人2004; Ferroir等人2008; Ohtani等。2004年; Tomioka和Fujino 1997),这与来自辉石的固态转化一致,可以玻璃化的Akimotoite和预先存在的狂热管理。观察到的分馏趋势和Akimotoite的颗粒形状表明来自宿主岩石甘油的冲击熔化产生的液体的结晶,并且从残留熔体中可能淬灭辉石玻璃基质。然而,这种解释与预期聚焦[(Mg,Fe)SiO3-Garnet]的结晶,而不是akimotoite,来自辉石液(Sawamoto 1987)的静态实验不一致。我们的发现提出了辉石高压多晶型物的形成机制问题,并对震动后的震荡高压和小行星的高温条件施加了额外的约束。

著录项

相似文献

  • 外文文献
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