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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Lattice distortion in ice crystals from the Vostok core (Antarctica) revealed by hard X-ray diffraction; implication in the deformation of ice at low stresses
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Lattice distortion in ice crystals from the Vostok core (Antarctica) revealed by hard X-ray diffraction; implication in the deformation of ice at low stresses

机译:硬X射线衍射揭示了来自Vostok核心(南极洲)的冰晶的晶格畸变;低应力下冰变形的含义

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摘要

Hard X-ray diffraction experiments have been carried out on ice monocrystals taken from the 3623 m long Vostok core (Antarctica). Strain gradients associated with the storage of geometrically necessary dislocations appear to be a general feature of the deformation macrostructure of ice. The observed lattice distortion is related to the bending of the basal plane and the torsion of the lattice around the c-axis. The lattice distortion is shown to be compatible with the basal dislocations generally observed in ice crystals, supporting the assumption of deformation modes governed by basal slip and accommodated by recrystallization process. The dependence of the ice viscosity on grain size in ice sheets appears to be compatible with these accommodation modes.
机译:已经对从3623 m长的Vostok岩心(南极洲)取得的冰单晶进行了硬X射线衍射实验。与几何上必要的位错的存储相关的应变梯度似乎是冰形变宏观结构的一般特征。观察到的晶格畸变与基面的弯曲和晶格围绕c轴的扭转有关。晶格畸变显示出与通常在冰晶中观察到的基底位错兼容,支持了由基底滑移控制并由重结晶过程调节的变形模式的假设。冰粘度对冰盖中晶粒尺寸的依赖性似乎与这些调节方式兼容。

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