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arxiv: 1710.03079 · v1 · pith:A3D7222Wnew · submitted 2017-10-09 · ❄️ cond-mat.str-el

Weak magnetic anisotropy in GdRh₂Si₂ studied by magnetic resonance

classification ❄️ cond-mat.str-el
keywords resonancemagneticanisotropicorderedanisotropyferromagneticgdrhlayers
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The antiferromagnetically (AFM) ordered state of GdRh$_{2}$Si$_{2}$ which consists of AFM-stacked ferromagnetic layers is investigated by magnetic resonance spectroscopy. The almost isotropic Gd$^{3+}$ paramagnetic resonance becomes anisotropic in the AFM ordered region below 107 K. The emerging internal anisotropic exchange-fields are still small enough to allow an investigation of their magnetization dynamics by using a standard microwave-frequency magnetic resonance technique. We could characterize this anisotropy in detail in the ferromagnetic layers of the excitation at 9 and 34 GHz. We derived a resonance condition for the AFM ordered phase to describe the weak in-plane anisotropic behaviour in combination with a mean-field analysis.

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