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Origin of the magnetic-field dependence of the nuclear spin-lattice relaxation in iron

机译:铁核自旋晶格弛豫的磁场依赖性起源

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摘要

The magnetic-field dependence of the nuclear spin-lattice relaxation at Ir impurities in Fe was measured for fields between 0 and 2 T parallel to the [100] direction. The reliability of the applied technique of nuclear magnetic resonance on oriented nuclei was demonstrated by measurements at different radio-frequency (rf) field strengths. The interpretation of the relaxation curves, which used transition rates to describe the excitation of the nuclear spins by a frequency-modulated rf field, was confirmed by model calculations. The magnetic-field dependence of the so-called enhancement factor for rf fields, which is closely related to the magnetic-field dependence of the spin-lattice relaxation, was also measured. For several magnetic-field-dependent relaxation mechanisms, the form and the magnitude of the field dependence were derived. Only the relaxation via eddy-current damping and Gilbert damping could explain the observed field dependence. Using reasonable values of the damping parameters, the field dependence could perfectly be described. This relaxation mechanism is, therefore, identified as the origin of the magnetic-field dependence of the spin-lattice relaxation in Fe. The detailed theory, as well as an approximate expression, is derived, and the dependences on the wave vector, the resonance frequency, the conductivity, the temperature, and the surface conditions are discussed. The theory is related to previous attempts to understand the field dependence of the relaxation, and it is used to reinterpret previous relaxation experiments in Fe. Moreover, it is predicted that the field dependences of the relaxation in Fe and Co, on one side, and in Ni, on the other side, differ substantially, and it is suggested that the literature values of the high-field limits of the relaxation constants in Fe are slightly too large.
机译:对于平行于[100]方向的0到2 T之间的磁场,测量了Fe中Ir杂质时核自旋晶格弛豫的磁场依赖性。通过在不同的射频(rf)场强下进行测量,证明了定向核上应用核磁共振技术的可靠性。模型计算证实了弛豫曲线的解释,该弛豫曲线使用跃迁速率来描述频率调制的射频场对核自旋的激发。还测量了所谓的rf场增强因子的磁场依赖性,它与自旋晶格弛豫的磁场依赖性密切相关。对于几种与磁场有关的弛豫机制,得出了与磁场有关的形式和大小。只有通过涡流阻尼和吉尔伯特阻尼的弛豫可以解释观察到的场依赖性。使用合理的阻尼参数值,可以完美地描述磁场依赖性。因此,将该弛豫机理确定为Fe中自旋晶格弛豫的磁场依赖性的起源。推导了详细的理论以及近似表达式,并讨论了对波矢量,共振频率,电导率,温度和表面条件的依赖性。该理论与先前试图理解弛豫的场相关性的尝试有关,并且用于重新解释铁中先前的弛豫实验。而且,据预测,一侧的Fe和Co和另一侧的Ni中的弛豫的场相关性显着不同,并且建议弛豫的高场极限的文献价值。 Fe中的常数太大。

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