Agarwal Amar, Reznik Boris, Kontny Agnes, Heissler Stefan, Schilling Frank
Division of Structural Geology and Tectonophysics, Institute of Applied Geosciences, Karlsruhe Institute of Technology, 76131 Karlsruhe, Germany.
Department of Earth Science, Indian Institute of Technology, Roorkee, India.
Sci Rep. 2016 May 18;6:25991. doi: 10.1038/srep25991.
Lingunite nanocrystals and amorphous plagioclase (maskelynite) are identified at the contacts between augite and labradorite wedge-shaped interfaces in the doleritic rocks of the Lockne impact structure in Sweden. The occurrence of lingunite suggests that the local pressure was above 19 GPa and the local temperature overwhelmed 1000 °C. These values are up to 10 times higher than previous values estimated numerically for bulk pressure and temperature. High shock-induced temperatures are manifested by maskelynite injections into microfractures in augite located next to the wedges. We discuss a possible model of shock heterogeneity at mineral interfaces, which may lead to longer duration of the same shock pressure and a concentration of high temperature thus triggering the kinetics of labradorite transformation into lingunite and maskelynite.
在瑞典洛克内撞击构造的辉绿岩中,在辉石和拉长石楔形界面之间的接触处鉴定出了林根石纳米晶体和无定形斜长石(熔长石)。林根石的出现表明局部压力高于19吉帕,局部温度超过1000℃。这些值比之前通过数值估算的整体压力和温度值高出多达10倍。高冲击诱导温度表现为熔长石注入到楔形物旁边辉石中的微裂缝中。我们讨论了一种矿物界面处冲击非均质性的可能模型,这可能导致相同冲击压力的持续时间更长以及高温集中,从而触发拉长石向林根石和熔长石转变的动力学过程。