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Giant magnetoresistance in laser-deposited permalloy/Ag multilayers

机译:激光沉积坡莫合金/银多层膜中的巨磁电阻

摘要

Giant magnetoresistance (GMR) of 3.5% in low fields of about 10 Oe was observed at room temperature in as-prepared laser-deposited Ni80Fe20/Ag (permalloy/Ag) multilayers. Strong columnar growth in combination with preferential sputtering of Ag from the film surface during deposition of Ni80Fe20 layer helps to directly create a discontinuous multilayer structure necessary for high GMR values. The magnetoresistance was found to increase to 5.1% after annealing for just 10 min at 275 degreesC. This increase is attributed to structural relaxation processes such as demixing of the intermixed interfaces, preferential diffusion of Ag to the column boundaries and reduction of structural defects. Pulsed laser deposition appears to be a suitable technique for the preparation of permalloy/Ag films with considerable GMR in a one-step process. (C) 2002
机译:在室温下,在制备的激光沉积Ni80Fe20 / Ag(坡莫合金/ Ag)多层膜中,在约10 Oe的低磁场中观察到3.5%的巨磁电阻(GMR)。在Ni80Fe20层的沉积过程中,强劲的柱状生长与优先从膜表面溅射银相结合,有助于直接产生高GMR值所必需的不连续多层结构。发现在275℃退火10分钟后,磁阻增加到5.1%。这种增加归因于结构弛豫过程,例如混合界面的混合,Ag优先扩散到柱边界以及结构缺陷的减少。脉冲激光沉积似乎是一种适用于一步法制备具有高GMR的坡莫合金/ Ag薄膜的技术。 (C)2002

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