Neutron Depolarization in Submicron Ferromagnetic Materials

M. Rekveldt
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引用次数: 36

Abstract

The neutron depolarization technique is based on the loss of polarization of a polarized neutron beam after transmission through ferromagnetic substances. This loss, caused by Larmor precession in individual domains, determines the mean domain size, the mean square direction cosines of the domains and the mean magnetization. The method is complementary to the neutron scattering technique with respect to the size of the inhomogeneities to be determined and the dynamic range accessible. Only the static applications of the method in studying domain structures are considered. As examples will be treated metal foils under stress, oriented ferroxdur permanent magnets, soft ferrites, recording tapes and thin films. In most of these examples magnetic correlations between neighbouring domains are subject of study.
亚微米铁磁材料中的中子去极化
中子退极化技术是基于极化中子束通过铁磁性物质后的极化损失。这种损失是由单个畴的拉莫尔进动引起的,它决定了畴的平均尺寸、畴的均方方向余弦和平均磁化强度。该方法与中子散射技术在非均匀性的大小和可获得的动态范围方面是互补的。本文只考虑了该方法在领域结构研究中的静态应用。例如,将处理应力下的金属箔,定向铁氧体永磁体,软铁氧体,录音磁带和薄膜。在大多数这些例子中,邻近域之间的磁相关性是研究的主题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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