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AbstractAbstract
[en] We investigate the use of AgSn alloys as the spacer layer in current-perpendicular-to-the-plane magnetoresistance devices. Alloying with Sn increases resistivity but results in a reasonably long (>10 nm) spin-diffusion length, so large magnetoresistance can be achieved with thin AgSn spacers. Compared to Ag thin films, AgSn forms smaller grain sizes, reduced roughness, and exhibits less interdiffusion upon annealing, resulting in decreased interlayer magnetic coupling in exchange biased spin-valves. AgSn also shows improved corrosion resistance compared to Ag, which is advantageous for nanofabrication, including magnetic recording head sensors. Combining a AgSn spacer with Co-based Heusler alloy ferromagnet in an exchange biased, polycrystalline trilayer thinner than 12 nm results in magnetoresistance values up to 15% at room temperature
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(c) 2015 AIP Publishing LLC; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
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ALLOYS, ALUMINIUM ALLOYS, ANGULAR MOMENTUM, COBALT ALLOYS, COPPER ALLOYS, COPPER BASE ALLOYS, CORROSION RESISTANT ALLOYS, CRYSTALS, DIMENSIONS, ELECTRIC CONDUCTIVITY, ELECTRICAL PROPERTIES, ELEMENTS, FILMS, HEAT TREATMENTS, LENGTH, MANGANESE ALLOYS, METALS, MICROSTRUCTURE, PARTICLE PROPERTIES, PHYSICAL PROPERTIES, SIZE, SURFACE PROPERTIES, TEMPERATURE RANGE, TRANSITION ELEMENT ALLOYS, TRANSITION ELEMENTS
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