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首页> 外文期刊>Industrial and organizational psychology >Magnetic Droplet Mode in a Vertical Nanocontact-Based Spin Hall Nano-Oscillator at Oblique Fields
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Magnetic Droplet Mode in a Vertical Nanocontact-Based Spin Hall Nano-Oscillator at Oblique Fields

机译:斜场垂直纳米周开的旋转霍尔纳米振荡器中的磁液滴模式

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摘要

We experimentally demonstrate an alternative type of spin Hall nano-oscillator based on a vertical nanocontact fabricated on a Pt/(Co/Ni) multilayer. We analyze the spectral characteristics of the nano-oscillator as a function of current, magnetic field, and temperature. At sufficiently large currents, the oscillator exhibits dynamics at a frequency far below the ferromagnetic resonance, which at large fields exhibits a redshift with increasing current. At smaller fields and low temperatures, the frequency becomes nearly independent of current, with a well-defined threshold current. These distinct spectral characteristics of the demonstrated nano-oscillator can be explained by the formation of the magnetic droplet-a dissipative magnetic soliton stabilized by the local injection of spin current produced by the spin Hall effect in Pt. The minimum linewidth exhibits a linear temperature dependence, suggesting single-mode dynamics, and enabling coherent magnetization auto-oscillation at room temperature. The demonstrated nano-oscillator geometry provides alternative opportunities for the development of active nanomagnetic devices and for optimization of their spectral characteristics for applications in microwave technology and spin-wave logic.
机译:我们通过在Pt /(Co / Ni)多层上制造的垂直纳米接触,通过实验证明替代类型的旋转霍尔纳米振荡器。我们将纳米振荡器的光谱特性分析为电流,磁场和温度的函数。在足够大的电流下,振荡器在远低于铁磁共振的频率下表现出动态,在大场中具有随着电流的增加而表现出红移。在较小的领域和低温下,频率几乎与电流无关,具有明确定义的阈值电流。所示纳米振荡器的这些不同的光谱特性可以通过形成磁性液滴 - 通过局部注射由Pt中的旋转霍尔效应产生的旋转电流稳定的耗散磁性溶剂来解释。最小线宽呈现线性温度依赖性,表明单模动态,并在室温下实现相干磁化自动振荡。所示的纳米振荡器几何形状为有源纳米磁性装置的开发提供了替代机会,并优化了它们在微波技术和旋转波逻辑中的应用的光谱特性。

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