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Optically detected ferromagnetic resonance in diverse ferromagnets via nitrogen vacancy centers in diamond

机译:通过金刚石中的氮空位中心以光学方式检测各种铁磁体中的铁磁共振

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摘要

We report measurements of optically detected ferromagnetic resonance (ODFMR) in thin films using nitrogen-vacancy (NV) centers in diamond, whose fluorescence intensity changes in response to the ferromagnetic resonance (FMR) excitation of a proximal ferromagnet. Here, we extend the study of the off-resonant and broadband detection of FMR, first observed in the magnetic insulator YIG to a diverse set of ferromagnetic materials. We measure ODFMR signals from several technologically relevant metallic ferromagnetic materials including Py, Co, Co2(Mn0.6Fe0.4)Ge, and an insulating NiZnAl ferrite. These results show the generality of the spin-relaxation based coupling of the NV spins to the ferromagnetic dynamics that enables this detection. The observable field-frequency range of the ODFMR signal is dependent on material parameters such as saturation magnetization and damping. These results imply that NV-based ODFMR can give insights into nanoscale ferromagnetic dynamics and its damping processes, especially for samples with low magnetization and in the low field-frequency regime, which is important for several technologies.
机译:我们报告了使用金刚石中的氮空位(NV)中心在薄膜中进行光学检测的铁磁共振(ODFMR)的测量,其荧光强度响应近端铁磁体的铁磁共振(FMR)激发而变化。在这里,我们将对FMR的非共振和宽带检测的研究扩展到了在各种不同的铁磁材料中,首先是在磁绝缘子YIG中观察到的。我们从几种技术上相关的金属铁磁材料(包括Py,Co,Co2(Mn0.6Fe0.4)Ge和绝缘的NiZnAl铁氧体)测量ODFMR信号。这些结果表明NV自旋与基于铁磁动力学的自旋弛豫耦合的一般性,从而使这种检测成为可能。 ODFMR信号的可观察到的场频范围取决于材料参数,例如饱和磁化强度和阻尼。这些结果表明,基于NV的ODFMR可以洞察纳米级铁磁动力学及其阻尼过程,特别是对于低磁化强度和低场频状态的样品而言,这对于多种技术至关重要。

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