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Exchange-coupled magnetoresistive sensor with a coercive ferrite layer and an oxide underlayer having a spinal lattice structure

机译:具有矫顽铁氧体层和具有脊柱晶格结构的氧化物底层的交换耦合磁阻传感器

摘要

An exchange-coupled magnetic structure includes a ferromagnetic layer, a coercive ferrite layer, such as cobalt-ferrite, for biasing the magnetization of the ferromagnetic layer, and an oxide underlayer, such as cobalt-oxide, in proximity to the coercive ferrite layer. The oxide underlayer has a lattice structure of either rock salt or a spinel and exhibits no magnetic moment at room temperature. The underlayer affects the structure of the coercive ferrite layer and therefore its magnetic properties, providing increased coercivity and enhanced thermal stability. As a result, the coercive ferrite layer is thermally stable at much smaller thicknesses than without the underlayer. The exchange-coupled structure is used in spin valve and magnetic tunnel junction magnetoresistive sensors in read heads of magnetic disk drive systems. Because the coercive ferrite layer can be made as thin as 1 nm while remaining thermally stable, the sensor satisfies the narrow gap requirements of high recording density systems.
机译:交换耦合磁性结构包括铁磁层,用于使铁磁层的磁化偏置的矫顽铁氧体层(例如,钴铁氧体)以及在矫顽铁氧体层附近的氧化物底层(例如,氧化钴)。氧化物底层具有岩盐或尖晶石的晶格结构,并且在室温下不表现出磁矩。底层影响矫顽铁氧体层的结构,从而影响其磁性能,从而提高矫顽力并增强热稳定性。结果,与没有底层的情况相比,矫顽铁氧体层的热稳定性小得多。交换耦合结构用于磁盘驱动系统的读取头中的自旋阀和磁隧道结磁阻传感器。由于可将顽固铁氧体层制成薄至1 nm的同时保持热稳定性,因此该传感器满足了高记录密度系统的窄间隙要求。

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