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Tunability of output frequency using Spin Hall Angle in Spin Hall Spin Torque Nano Oscillator

机译:旋转霍尔旋转扭矩纳米振荡器旋转霍尔角的输出频率的可调性

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We theoretically modelled a couple of Spin Hall Spin Torque Nano Oscillator [SHSTNO] with Current In Plane [CIP] Geometry. In general, the device comprised of bilayer (i.e.) a Ferro magnetic free layer [Co and CoFeB] along with the heavy metal [Pt]. The main motto of the present study is to tune the frequency of the above mentioned devices by altering the Spin Hall Angle [SHA] (θ). The sustained oscillation in the oscillating free layer is studied by the governing Landau-Lifshitz-Gilbert-Slonczewski [LLGS] equation. The devices mainly works under the principle of Spin Hall Effect [SHE], which originates from spin orbit scattering paves for the deflection of conduction electrons with opposite signs oriented in opposite direction. When the spin reaches the free layer due to the Spin Transfer Torque phenomena [STT], persistent oscillation occurs which end up in emitting the microwave frequency. Those are highly tunable with the aid of (θ), which generally varies from 0.1 to 0.9. The author sparks that for maximum frequency tunability, one can easily vary the SHA, (θ) to the maximum with the free layer of minimal thickness paves for the maximum frequency emission by the device. For CoFeB device, at free layer thickness of about 3 nm and the corresponding SHA of about 0.8, the maximum frequency of 67.8 GHz is obtained. The author emphasize that, the results shown here can find the application as spin wave emitters for magnonic applications where the spin waves are used for transmission and processing information on nano scale level.
机译:我们理论上建模了几个旋转霍尔旋转扭矩纳米振荡器[Shstno],电流在平面[CIP]几何中。通常,通过双层(即)将铁磁性自由层[CO和COFEB]与重金属[Pt]组成。本研究的主要座右铭是通过改变旋转霍尔角[SHA](θ)来调谐上述装置的频率。通过管理Landau-Lifshitz-Gilbert-Slonczewski [LLGS]方程研究了摆动自由层中的持续振荡。该器件主要以旋转霍尔效应的原理工作[SHE],它来自旋转轨道散射铺设的传导电子的偏转,其具有相反方向的相对迹象。当旋转由于自旋转移扭矩现象而达到自由层时,发生持续振荡,最终发出微波频率。借助于(θ)的辅助(θ)高度可调谐,这通常从0.1到0.9变化。作者引发了用于最大频率可调性,可以轻松地将SHA,(θ)变为最大值,通过自由层的最小厚度铺设设备,用于设备的最大频率发射。对于CoFeB装置,在约3nm的自由层厚度和约0.8的相应SHA,获得67.8GHz的最大频率。作者强调,此处显示的结果可以将应用程序视为旋转波发射器,用于旋转波用于传输和处理关于纳米级级别的信息。

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