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Gyromagnetically-induced transparency for ferrites

机译:磁致感应的铁氧体透明性

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摘要

The magnetic permeability is generally a second-rank tensor for an anisotropic medium. By considering a dc bias magnetic field and an ac circularly polarized wave, a generalized permeability can be derived. The formula for the generalized permeability explains why most dielectrics, paramagnetic and diamagnetic materials, and even metals have a relative permeability close to unity. For ferromagnetic or ferrimagnetic materials, the permeability strongly depends on the applied magnetic field and the polarizations of the electromagnetic waves. This work discusses how a circularly polarized wave interacts with the magnetic dipole moment being induced by and precessing around the applied dc bias field. The gyromagnetic resonance between the wave and the induced dipole allows us to find a condition where the incident wave can propagate through the medium without reflection. This explains the mysterious effect of gyromagnetically induced transparency. (C) 2016 American Association of Physics Teachers.
机译:磁导率通常是各向异性介质的第二张量。通过考虑直流偏置磁场和交流圆极化波,可以得出广义磁导率。广义磁导率的公式解释了为什么大多数电介质,顺磁和抗磁材料,甚至金属的相对磁导率都接近于1。对于铁磁性或亚铁磁性材料,磁导率在很大程度上取决于所施加的磁场和电磁波的极化。这项工作讨论了圆极化波如何与施加的直流偏置磁场感应并绕其产生的磁偶极矩相互作用。波与感应偶极之间的回旋共振使我们能够找到入射波可以通过介质传播而没有反射的条件。这解释了旋磁感应的透明度的神秘效果。 (C)2016年美国物理教师协会。

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