石英和方解石微结构在压力和温度梯度中的转变,土耳其Sivrihisar

IF 1.5 Q1 Earth and Planetary Sciences Geodinamica Acta Pub Date : 2013-12-01 DOI:10.1080/09853111.2013.858952
N. Seaton, C. Teyssier, D. Whitney, M. Heizler
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引用次数: 20

摘要

土耳其Sivrihisar地块南部的层间石英岩和大理岩记录了从高压/低温到绿泥石-硅线石岩-巴罗维亚叠印的变质条件。该层序是在拉张作用下挖掘出来的,在地壳变薄过程中产生了宏观收缩构造(l -构造岩)。石英显微组织由以晶界迁移为主的位错蠕变动态再结晶聚集体组成。石英微结构在高变质梯度上相对稳定,晶体结构模式由平面应变向收缩应变过渡。方解石织物的特点是继承了高压多晶文石的柱状结构的渐进叠印。在低温巴氏域(500℃)和高收缩应变下,大理岩没有结晶组织,可能反映了位错蠕变向扩散蠕变的转变。高压/低温大理岩和石英岩中的辉长石年龄谱相对简单,为晚白垩世(88 ~ 82 Ma) 40Ar/39Ar年龄。巴罗维亚白云母记录的年龄明显更年轻(63-55 Ma)。古新世-始新世的拉张体系及其变质作用可能发生在俯冲带之上,是始新世(~53 Ma)弧深岩体侵入的前兆。
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Quartz and calcite microfabric transitions in a pressure and temperature gradient, Sivrihisar, Turkey
Interlayered quartzite and marble in the southern Sivrihisar Massif, Turkey, record metamorphic conditions ranging from high-pressure/low-temperature through a Barrovian overprint from chlorite- to sillimanite-zone conditions. This sequence was exhumed under transtension, producing macroscopic constrictional fabrics (L-tectonites) during crustal thinning. Quartz microstructures consist of dynamically recrystallized aggregates in the dislocation creep regime dominated by grain boundary migration. Quartz microstructures are relatively constant across the high metamorphic gradient, and crystallographic fabric patterns transition from plane strain to constriction strain. Calcite fabrics are characterized by progressive overprinting of a columnar texture inherited from the high-pressure polymorph aragonite. In the low-temperature Barrovian domain (<400 °C), shearing of calcite rods produced a very strong c-axis point maximum. At moderate temperature, calcite rods were partially to totally recrystallized and the strong preferred orientation maintained. At temperature >500 °C and high constriction strain, marble has no crystallographic fabric, likely reflecting a transition from dislocation creep to diffusion creep. Phengite in high-pressure/low-temperature marble and quartzite yields relatively simple age spectra with Late Cretaceous (88–82 Ma) 40Ar/39Ar ages. Barrovian muscovite records significantly younger ages (63–55 Ma). The transtension system and associated metamorphism may have occurred above a subduction zone in Paleocene–Eocene time as a precursor to intrusion of Eocene (~53 Ma) arc plutons.
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来源期刊
Geodinamica Acta
Geodinamica Acta 地学-地球科学综合
CiteScore
4.50
自引率
0.00%
发文量
0
审稿时长
25 weeks
期刊介绍: Geodinamica Acta provides an international and interdisciplinary forum for the publication of results of recent research dealing with both internal and external geodynamics. Its aims to promote discussion between the various disciplines that work on the dynamics of the lithosphere and hydrosphere. There are no constraints over themes, provided the main thrust of the paper relates to Earth''s internal and external geodynamics. The Journal encourages the submission of papers in all fields of earth sciences, such as biostratigraphy, geochemistry, geochronology and thermochronology, geohazards and their societal impacts, geomorphology, geophysics, glaciology, igneous and metamorphic petrology, magmatism, marine geology, metamorphism, mineral-deposits and energy resources, mineralogy, orogeny, palaeoclimatology, palaeoecology, paleoceanograpgy, palaeontology, petroleum geology, sedimentology, seismology and earthquakes, stratigraphy, structural geology, surface processes, tectonics (neoteoctonic, plate tectonics, seismo-tectonics, Active tectonics) and volcanism. Geodinamica Acta publishes high quality, peer-reviewed original and timely scientific papers, comprehensive review articles on hot topics of current interest, rapid communications relating to a significant advance in the earth sciences with broad interest, and discussions of papers that have already appeared in recent issues of the journal. Book reviews are also included. Submitted papers must have international appeal and regional implications; they should present work that would be of interest to many different specialists. Geographic coverage is global and work on any part of the world is considered. The Journal also publishes thematic sets of papers on topical aspects of earth sciences or special issues of selected papers from conferences.
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