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[Ni/Mn] superlattice-based spin-valves with high thermal stabilities

机译:[Ni / Mn]具有高热稳定性的超晶格自旋阀

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摘要

Ni/Mn superlattice-based spin-valve films were fabricated by dc sputtering method. Coercivity (H/sub c/) of the pinned layer and exchange coupling field (H/sub ex/) between the pinned layer and pinning Ni/Mn superlattice with an antiferromagnetic phase were investigated in order to optimize the deposition conditions and annealing process. The thickness of each layer was controlled by deposition time. The H/sub ex/ and H/sub c/ of Ni/Mn superlattice-based spin-valves increased gradually with the number of annealing cycles and number of bilayers. At the Ni composition of 38 at.% for the annealing time of 12 hours, the largest H/sub ex/ and H/sub c/ of glass/[Ni/Mn]/sub 50//NiFe(60 /spl Aring/)/Cu(30 /spl Aring/)/NiFe(60 /spl Aring/) spin-valves are 305 Oe and 245 Oe, respectively. However, the magnetoresistance (MR) ratio is small, due to the shunting effect of Ni/Mn superlattice and the interdiffusion between NiFe and Cu.
机译:采用直流溅射法制备了Ni / Mn超晶格自旋阀膜。为了优化沉积条件和退火工艺,研究了被钉扎层的矫顽力(H / sub c /)和被钉扎层与带有反铁磁相的钉扎Ni / Mn超晶格之间的交换耦合场(H / sub ex /)。每层的厚度由沉积时间控制。 Ni / Mn超晶格自旋阀的H / sub ex /和H / sub c /随着退火循环次数和双层数的增加而逐渐增加。在12小时的退火时间下,镍成分为38 at。%时,玻璃/ [Ni / Mn] / sub 50 // NiFe(60 / spl Aring / )/ Cu(30 / spl Aring /)/ NiFe(60 / spl Aring /)自旋阀分别为305 Oe和245 Oe。但是,由于Ni / Mn超晶格的分流效应以及NiFe和Cu之间的相互扩散,磁阻(MR)比很小。

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