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Electronic structure and magnetism of CuNi coherent modulated structures

机译:CuNi相干调制结构的电子结构和磁性

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The electronic structure and magnetism of coherent modulated structures of CuNi for varying numbers of Cu and Ni layers modulated along [111] and [100] directions has been determined theoretically by means of self‐consistent spin polarized LMTO energy band studies and compared with experiment and with theoretical results separately obtained for bulk fcc and tetragonally distorted Ni metal. The magnetic moments in the Ni layers in CuNi are found to be reduced relative to that of fcc Ni indicating that the enhanced magnetism deduced from earlier ferromagnetic resonance observations must arise from other sources. These predictions have been confirmed recently by direct magnetization and neutron magnetic scattering studies.
机译:通过自洽自旋极化LMTO能带研究,理论上确定了沿[111]和[100]方向调制的不同数量的Cu和Ni层的CuNi相干调制结构的电子结构和磁性,并与实验和对于块状fcc和四方扭曲的镍金属,分别获得了理论结果。发现相对于fcc Ni而言,CuNi中Ni层中的磁矩减小了,这表明从早期的铁磁共振观察中推论出的增强的磁必须来自其他来源。这些预测最近已经通过直接磁化和中子磁散射研究得到了证实。

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    《Journal of Applied Physics》 |1981年第3期|P.1622-1623|共2页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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