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Rotation history of Chios Island, Greece since the Middle Miocene

机译:中新世以来希腊希俄斯岛的自转历史

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摘要

Superimposed on a regional pattern of oroclinal bending in the Aegean and west Anatolian regions, the coastal region of western Anatolia, shows a complex and chaotic pattern of coexisting clockwise and counterclockwise rotations. Here, we report new palaeomagnetic data from the eastern Aegean island of Chios, to test whether this fits the regional palaeomagnetic pattern associated with the Aegean orocline, or should be included in the narrow zone of chaotic palaeomagnetic directions. Therefore, a combined palaeomagnetic study of Miocene sediments and volcanic rocks has been carried out. Thermal and AF demagnetization of a 130-m thick Middle Miocene succession from the Michalos claypit allowed a stable component of both polarities to be isolated while rock magnetic experiments showed that the main magnetic carrier is magnetite. When compared with the Eurasian reference, the mean declination of 348 ± 5.1 ° implies 15° of counterclockwise rotation since Middle Miocene times. The obtained shallow inclination of 38±6.7° was corrected to 61.8±3.9°, by applying the elongation/inclination correction method for inclination shallowing. This result is similar to the expected inclination of 58° for the latitude of Chios. The palaeomagnetic analysis (demagnetization treatment and corresponding rock magnetic measurements) of the volcanic rocks identify a stable, predominantly normal, ChRM with poorly constrained mean declination of about 290 ± 19.8° based on five successfully resolved components. The significantly different palaeomagnetic results obtained from an island as small as Chios (and a very short distance), and the relatively large rotation amounts do not fit the regional palaeomagnetic direction of Lesbos and basins in northwestern Turkey which show little or no significant rotation. We thus prefer to include Chios in the coastal zone of chaotic rotations, which may represent a previously inferred tectonic transfer zone that accommodates lateral differences in extensional strain within the Aegean back-arc.
机译:安那托利亚西部沿海地区与爱琴海和安纳托利亚西部地区的口斜弯曲区域模式重叠,显示出顺时针和逆时针旋转并存的复杂且混乱的模式。在这里,我们报告了来自爱琴海东部希俄斯岛的新古地磁数据,以测试这是否适合与爱琴海Orocline相关的区域古地磁模式,或应包括在混沌古地磁方向的狭窄区域中。因此,已经对中新世沉积物和火山岩进行了古地磁研究。从米哈洛斯(Michalos)粘土坑对130 m厚的中新世中段进行了热和AF消磁,可以分离出两个极性的稳定成分,而岩石磁实验表明,主要的磁性载体是磁铁矿。与欧亚基准相比,自中新世以来,平均偏角348±5.1°表示逆时针旋转15°。通过使用用于倾斜浅化的伸长/倾斜校正方法,将获得的38±6.7°的浅倾斜校正为61.8±3.9°。该结果类似于希俄斯纬度的预期倾斜度58°。火山岩的古地磁分析(退磁处理和相应的岩磁测量)确定了一个稳定的,主要是正常的ChRM,基于五个成功解析的分量,其平均磁偏角约束较弱,约为290±19.8°。从一个希俄斯小岛(且距离很短)获得的古地磁结果明显不同,并且自转量相对较大,与土耳其西北部莱斯博斯岛和盆地的区域古地磁方向不相符,后者几乎没有或没有明显的自转。因此,我们更喜欢将Chios包括在混沌旋转的沿海区域中,这可能代表了先前推断的构造转换带,该区域适应了爱琴海后弧内伸展应变的横向差异。

著录项

  • 来源
    《Journal of geodynamics》 |2011年第5期|p.327-338|共12页
  • 作者单位

    Department of Geophysics, School of Geology, Aristotle University ofThessaloniki, 54124 Thessaloniki, Greece;

    Department de la Terre, Musuem d'Histoire Naturelle, 8, rue Buffon, 75005 Paris, France;

    Department of Geophysics, School of Geology, Aristotle University ofThessaloniki, 54124 Thessaloniki, Greece;

    Physics of Geological Processes, University of Oslo, Sem Sslands vei24,0316 Oslo, Norway;

    Department of Geology, School of Geology, Aristotle University ofThessaloniki, 54124 Thessaloniki, Greece;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aegean; paleomagnetism; vertical axis rotation; chios;

    机译:爱琴海;古磁性;垂直轴旋转;混沌;

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