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Anisotropy of magnetic susceptibility in alkali feldspar and plagioclase

机译:碱性长石和斜长石中磁化率的各向异性

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摘要

Feldspars are the most abundant rock-forming minerals in the Earth’s crust, but their magnetic properties have not been rigorously studied. This work focuses on the intrinsic magnetic anisotropy of 31 feldspar samples with various chemical compositions. Because feldspar is often twinned or shows exsolution textures, measurements were performed on twinned and exsolved samples as well as single crystals. The anisotropy is controlled by the diamagnetic susceptibility and displays a consistent orientation of principal susceptibility axes; the most negative or minimum susceptibility is parallel to [010], and the maximum (least negative) is close to the crystallographic [001] axis. However, the magnetic anisotropy is weak when compared to other rock-forming minerals, 1.53 × 10−9 m3 kg−1 at maximum. Therefore, lower abundance minerals, such as augite, hornblende or biotite, often dominate the bulk paramagnetic anisotropy of a rock. Ferromagnetic anisotropy is not significant in most samples. In the few samples that do show ferromagnetic anisotropy, the principal susceptibility directions of the ferromagnetic subfabric do not display a systematic orientation with respect to the feldspar lattice. These results suggest that palaeointensity estimates of the geomagnetic field made on single crystals of feldspar will not be affected by a systematic orientation of the ferromagnetic inclusions within the feldspar lattice.
机译:长石是地壳中含量最高的岩石形成矿物,但尚未对其磁性进行严格的研究。这项工作着眼于31种具有不同化学成分的长石样品的固有磁各向异性。由于长石通常是孪晶的或显示出析出的质地,因此对孪晶和析出的样品以及单晶进行了测量。各向异性是由抗磁化率控制的,并且显示出主要磁化率轴的方向一致。负磁化率最大或最小平行于[010],最大磁化率(最小负性)接近晶体学[001]轴。但是,与其他成岩矿物相比,磁各向异性较弱,最大为1.53×10-9 m3 kg-1。因此,较低丰度的矿物(例如铁矿,角闪石或黑云母)通常在岩石的整体顺磁各向异性中占主导地位。在大多数样品中,铁磁各向异性并不明显。在确实显示出铁磁各向异性的少数样品中,铁磁亚织物的主要磁化率方向相对于长石晶格未显示出系统的取向。这些结果表明,长石单晶上产生的地磁场的古强度估计将不受长石晶格内铁磁夹杂物系统取向的影响。

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