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Nanoscale magnetic tunnel junction sensors with perpendicular anisotropy sensing layer

机译:具有垂直各向异性传感层的纳米级磁性隧道结传感器

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摘要

A nano-scale linear magnetoresistance sensor is demonstrated using magnetic tunnel junctions with an in-plane magnetized reference layer and a sensing layer with interfacial perpendicular anisotropy. We show that the sensor response depends critically on the thickness of the sensing layer since its perpendicular anisotropy is significantly associated with thickness. The optimized sensors exhibit a large field sensitivity of up to 0.02% MR/Oe and a high linear field range of up to 600 Oe. These findings imply that this sensing scheme is a promising method for developing nano-scale magnetic sensors with simple design, high sensitivity, and low power consumption.
机译:使用具有平面内磁化参考层和具有界面垂直各向异性的传感层的磁性隧道结,证明了纳米级线性磁阻传感器。我们表明,传感器的响应在很大程度上取决于传感层的厚度,因为其垂直各向异性与厚度显着相关。经过优化的传感器具有高达0.02%MR / Oe的大场灵敏度和高达600 Oe的高线性场范围。这些发现表明,这种传感方案是开发具有简单设计,高灵敏度和低功耗的纳米级磁传感器的一种有前途的方法。

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