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(07D123) Effects of notch shape on the magnetic domain wall motion in nanowires with in-plane or perpendicular magnetic anisotropy

机译:(07D123)凹口形状对纳米线磁畴壁运动的影响,具有平面内或垂直磁各向异性

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Magnetic domain walls (DWs) in nanowires have been extensively investigated for potential applications in spintronic devices. For the precise storage of magnetic data, the control of DW pinning and depinning is critical. Here, we report upon the micromagnetic modeling results of the DW motion behaviors in notched or anti-notched nanowires possessing in-plane magnetic anisotropy (IMA) or perpendicular-to-the-plane magnetic anisotropy (PMA). In the nanowires with IMA, the energy of the DW in nanowires with anti-notches was lower compared to that of the nanowires with normal notches. Easier DW depinning motions were observed in the anti-notched nanowires. Unlike in the IMA case, the DW energy in the nanowires with PMA was lower with normal notches. Thus, the DW was able to move faster and easier through the normal notches compared to the anti-notches in the nanowire with the PMA at the same current density.
机译:纳米线中的磁畴壁(DWS)已被广泛地研究了旋转式装置中的潜在应用。为了精确地存储磁数据,DW固定和脱落的控制是至关重要的。这里,我们报告在具有面内磁各向异性(IMA)或垂直于面对平面磁各向异性(PMA)的缺口或抗缺口纳米线中DW运动行为的微磁性建模结果。在具有IMA的纳米线中,与具有垂直凹口的纳米线的纳米线中DW中DW的能量降低。在抗缺口纳米线中观察到更容易DW的脱色运动。与IMA案例不同,纳米线中的DW能量与PMA呈较低的垂直凹口。因此,与具有相同电流密度的PMA的纳米线中的抗凹口相比,DW能够通过正常凹口移动更快更容易。

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