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Spin-orbit effects in heavy-atom organic radical ferromagnets

机译:重原子有机自由基铁磁体中的自旋轨道效应

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摘要

We discuss the effects of the spin-orbit interaction on heavy-atom organic magnets with specific reference to a series of isostructural sulfur- and selenium-based radical ferromagnets of tetragonal space group P(4)2_1m. By using a perturbative approach, we show the spin-orbit effects lead to a pairwise anisotropic exchange interaction between neighboring radicals that provides an easy magnetic axis running parallel to the c-axis. Estimates of the magnitude of this magnetic anisotropy explain the significant increase in the coercive fields by virtue of selenium incorporation. Complementing this theoretical discussion are the results of ferromagnetic resonance studies, which provide an experimental verification of both the magnitude and symmetry of the spin-orbit terms. Taken as a whole, the results underscore the importance of heavy atoms and crystal symmetry in the design of molecular ferromagnets with large magnetic anisotropy and high ordering temperatures.
机译:我们讨论自旋轨道相互作用对重原子有机磁体的影响,具体参考一系列四边形空间群P(4)2_1m的同构基于硫和硒的自由基铁磁体。通过使用摄动方法,我们显示了自旋轨道效应导致​​相邻原子团之间的成对各向异性交换相互作用,从而提供了一个平行于c轴的易磁化轴。磁各向异性的大小的估计解释了由于掺入硒,矫顽场显着增加。作为该理论讨论的补充,是铁磁共振研究的结果,这些研究提供了自旋轨道项的大小和对称性的实验验证。总的来说,这些结果强调了重原子和晶体对称性在具有大的磁各向异性和高有序温度的分子铁磁体的设计中的重要性。

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