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Internal Magnetoelastic Coupling Constant of Nickel Ferrite

机译:镍铁氧体的内部磁弹性耦合常数

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摘要

The coupling of the spin system to ionic displacements in a ferromagnetic crystal can cause displacements of the ions which do not result in external strains. A search was made for such magnetostrictive displacements of the oxygen ions in nickel ferrite by looking for a change in the intensity of the 442 x‐ray diffraction line. The sample was a disk‐shaped single crystal of nickel ferrite cut so that the face of the sample was a (221) plane. The intensity of the line when the magnetization was perpendicular to the disk was compared with the intensity when the magnetization was essentially in the plane of the disk near a [111] (easy) direction; these intensities were found to be equal to within 0.5%. The equilibrium ionic displacements were expressed in terms of the internal magnetoelastic coupling constants, assuming plausible modes of displacement of the oxygen ions. Changes in the structure factor of the 442 line resulting from these displacements were calculated. From these results and our upper limit for the fractional difference in the x‐ray intensity, we find that Bintγ≤1.6×108 and Bintϵ≤0.8×108, where Bintγ and Bintϵ are phenomenological magnetoelastic coupling constants appropriate to oxygen displacements belonging to the Γγ representation and Γϵ representation, respectively. Similar measurements on cobalt ferrite have been initiated, and changes in the intensity of the x‐ray diffraction line have been observed as the magnetization direction was changed. Preliminary results yield values of Bint at least ten times as large as in nickel ferrite.
机译:自旋系统与铁磁晶体中离子位移的耦合会导致离子位移,而不会导致外部应变。通过寻找442 x射线衍射线强度的变化,来搜索镍铁氧体中氧离子的这种磁致伸缩位移。样品是切割的圆盘状镍铁氧体单晶,因此样品的表面为(221)平面。将磁化强度垂直于磁盘时的线强度与磁化强度基本上在磁盘平面中[111](容易)方向时的强度进行了比较;发现这些强度等于或小于0.5%。假设内部氧弹性耦合常数表示平衡离子位移,并假设氧离子的位移模式合理。计算了由这些位移引起的442线结构因子的变化。从这些结果以及x射线强度分数差异的上限,我们发现Bintγ≤1.6×108和Bintϵ≤0.8×108,其中Bintγ和Bintϵ是适合于属于Γγ的氧位移的现象学磁弹性耦合常数。表示法和Γϵ表示法。已经开始对钴铁氧体进行类似的测量,并且观察到随着磁化方向的改变,x射线衍射线的强度也发生了变化。初步结果得出的Bint值至少是镍铁氧体的十倍。

著录项

  • 来源
    《Journal of Applied Physics》 |1964年第3期|共2页
  • 作者单位

    UNIVAC, Division of Sperry Rand Corporation, Blue Bell, Pennsylvania;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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