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Co-Based Heusler Alloys for CPP-GMR Spin-Valves With Large Magnetoresistive Outputs

机译:具有大磁阻输出的CPP-GMR自旋阀的钴基Heusler合金

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We studied various Heusler alloy compositions for the ferromagnetic layers of current-perpendicular-to-plane giant magnetoresistance (CPP-GMR) spin-valves (SVs) to obtain large MR outputs for the read sensor applications. The exchange biased SV with Co2 Fe(Al0.5 Si0.5) alloy showed a resistance change-area product (ΔRA) of 6 m Ωμm2 and an MR ratio of 21% at room temperature when the Co2 Fe(Al0.5 Si0.5) layer was well-B2-ordered by a high temperature annealing at 500°C. The critical bias current density for the spin torque effect on the reduction of ΔRA was ~ 3 × 107 A/cm2. Based on the high spin polarization directly measured by the point contact Andreev reflection method, Co2 (Cr0.1 Fe0.9 )Si, Co2 Mn(Ga0.5 Sn0.5 ), and Co2 Fe(Ge0.5 Ga0.5) alloy thin films were investigated for CPP-GMR SVs. Among them, the Co2Fe(Ge0.5Ga0.5) alloy showed a high CPP-GMR ratio in the pseudo SVs exceeding 40% at RT and 120% at 10 K.
机译:我们研究了用于电流垂直于平面的巨磁阻(CPP-GMR)自旋阀(SV)的铁磁层的各种Heusler合金成分,以获得用于读取传感器应用的大MR输出。 Co 2 Fe(Al 0.5 Si 0.5 )合金的交流偏置SV的电阻变化面积积(ΔRA)为6 mΩμm Co 2 Fe(Al 0.5 Si 0.5 )在室温下 2 的MR比为21%通过在500℃下的高温退火使该层良好地B 2有序。自旋转矩影响ΔRA减小的临界偏置电流密度约为3×10 7 A / cm 2 。基于点接触安德列夫反射法直接测量的高自旋极化,Co 2 (Cr 0.1 Fe 0.9 )Si,Co 2 Mn(Ga 0.5 Sn 0.5 )和Co 2 Fe(Ge 0.5 Ga研究了CPP-GMR SVs 0.5 )合金薄膜。其中,Co 2 Fe(Ge 0.5 Ga 0.5 )合金的伪SV中CPP-GMR比在40%时超过40%。 RT,在10 K时为120%。

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