论文标题

lihof $ _4 $:在Ising Ferromagnet中的Cuboidal Demagnetizing因子

LiHoF$_4$: Cuboidal Demagnetizing Factor in an Ising Ferromagnet

论文作者

Twengström, Mikael, Bovo, Laura, Petrenko, Oleg A., Bramwell, Steven T., Henelius, Patrik

论文摘要

电磁因子对铁磁体的物理学有重要影响。对于立方样品,这取决于敏感性和确定此功能的历史性问题继续产生理论和实验挑战。为了测试最近的理论,我们使用不同的纵横比的样品来测量Ising偶极铁磁铁Lihof $ _4 $的磁化率,并重新考虑了获得内在材料敏感性所需的消除磁性转换。我们的实验结果证实,材料的显微镜细节显着影响了转化。特别是,我们发现单轴旋转需要消极的转换,这与海森伯格旋转所需的转换不同,并且使用错误的imagnetization转换将导致系统测得的物理特性中的错误错误。我们的结果进一步阐明了有序铁磁体神秘的“平坦”敏感性的起源,这表明有序的铁磁相的内在敏感性是无限的,无论样品形状如何。

The demagnetizing factor has an important effect on the physics of ferromagnets. For cuboidal samples it depends on susceptibility and the historic problem of determining this function continues to generate theoretical and experimental challenges. To test a recent theory, we measure the magnetic susceptibility of the Ising dipolar ferromagnet LiHoF$_4$, using samples of varying aspect ratio, and we reconsider the demagnetizing transformation necessary to obtain the intrinsic material susceptibility. Our experimental results confirm that the microscopic details of the material significantly affect the transformation, as predicted. In particular, we find that the uniaxial Ising spins require a demagnetizing transformation that differs from the one needed for Heisenberg spins and that use of the wrong demagnetizing transformation would result in unacceptably large errors in the measured physical properties of the system. Our results further shed light on the origin of the mysterious `flat' susceptibility of ordered ferromagnets by demonstrating that the intrinsic susceptibility of the ordered ferromagnetic phase is infinite, regardless of sample shape.

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