首页> 外文OA文献 >Magnetization of exsolution intergrowths of hematite and ilmenite: Mineral chemistry, phase relations, and magnetic properties of hemo-ilmenite ores with micron- to nanometer-scale lamellae from Allard Lake, Quebec
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Magnetization of exsolution intergrowths of hematite and ilmenite: Mineral chemistry, phase relations, and magnetic properties of hemo-ilmenite ores with micron- to nanometer-scale lamellae from Allard Lake, Quebec

机译:赤铁矿和钛铁矿的溶出共生的磁化:来自魁北克省allard湖的微米级到纳米级薄片的矿物化学,相关系和磁性特性

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摘要

Hemo-ilmenite ores from Allard Lake, Quebec, were first studied over 50 years ago. Interest was renewed in these coarsely exsolved oxides, based on the theory of lamellar magnetism as an explanation for the high and stable natural remanent magnetizations (NRMs), 32 to 120 A/ m, reported here. To understand the magnetism and evolution of the exsolution lamellae, the microstructures and nanostructures were studied using scanning electron microscopy and transmission electron microscopy (TEM), phase chemistry, and relations between mineral chemistry and the hematite-ilmenite phase diagram. Cycles of exsolution during slow cooling resulted in lamellae down to 1 -2 nm thick. Combined electron microprobe, TEM, and X-ray diffraction (XRD) results indicate that hematite hosts reached a composition approximately ilmenite (Ilm) 14.4, and ilmenite hosts similar to Ilm 98. The bulk of the very stable NRM, which shows thermal unblocking similar to 595 -620 degrees C, was acquired during final exsolution in the two-phase region canted antiferromagnetic R(3) over bar c hematite + R (3) over bar ilmenite. Hysteresis measurements show a very strong anisotropy, with a stronger coercivity normal to, than parallel to, the basal plane orientation of the lamellae. Magnetic saturation (Ms) values are up to 914 A/ m, compared to 564 A/ m predicted for a modally equivalent spin-canted hematite corrected for similar to 15% R-2+ TiO3 substitution. Low-temperature hysteresis, AC-susceptibility measurements, and Mossbauer results indicate a Neel temperature (TN) of the geikielite-substituted ilmenite at similar to 43 K. The low-temperature hysteresis and AC-susceptibility measurements also show a cluster-spin-glass-like transition near 20 K. Below TN of ilmenite an exchange bias occurs with a 40 mT shift at 10 K.
机译:魁北克Allard Lake的亚铁钛铁矿最早是在50多年前进行研究的。根据层状磁学原理,对这些粗溶解的氧化物重新产生了兴趣,以解释此处报道的32-120 A / m的高和稳定自然剩余磁化强度(NRM)。为了了解析出层的磁性和演化,使用扫描电子显微镜和透射电子显微镜(TEM),相化学以及矿物化学与赤铁矿-钛铁矿相图之间的关系研究了微观结构和纳米结构。缓慢冷却期间的析出循环导致薄层低至1-2 nm厚。结合电子探针,TEM和X射线衍射(XRD)的结果表明,赤铁矿基质的组成接近钛铁矿(Ilm)14.4,钛铁矿基质类似于Ilm98。大部分非常稳定的NRM,显示出热解封相似至595 -620摄氏度,是在最终析出过程中获得的,在两相区域中斜交赤铁矿R(3)在赤铁矿上方,R(3)在钛铁矿上方。磁滞测量显示出非常强的各向异性,与薄片的基面方向垂直(平行于)的矫顽力强。磁饱和度(Ms)值高达914 A / m,相比之下,模态等效的自旋倾斜赤铁矿的校正值约为564 A / m,校正了类似的15%R-2 + TiO3替代。低温磁滞,交流磁化率测量和Mossbauer结果表明,经吉凯石替代的钛铁矿的Neel温度(TN)接近于43K。低温磁滞和交流磁化率测量也显示出簇状自旋玻璃在20 K附近发生类似的转变。在钛铁矿的TN以下,在10 K处发生40 mT位移的交换偏压。

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