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High magnetoresistance at low magnetic fields in self-assembled ZnO-Co nanocomposite films

机译:在低磁场高磁阻自组装ZnO-Co纳米复合薄膜

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The solid phase growth of self-assembled nanocrystals embedded in a crystalline host matrix opens up wide perspectives for the coupling of different physical properties, such as magnetic and semiconducting. In this work, we report the pulsed laser growth at room temperature of thin films composed of a dispersed array of ferromagnetic Co (0001) nanoclusters with an in-plane mono-size width of 1.3 nm, embedded in a ZnO (0001) crystalline matrix. The as-grown films lead to very high values of magnetoresistance, ranging at 9 T from -11% at 300 K to -19% at 50 K, with a steep decrease of the magnetoresistance at low magnetic fields. We establish the relationship between the magnetoresistance behavior and the magnetic response of the Co nanocluster assembly. A spin-dependent tunneling of the electrons between the Co nanoclusters through and by the semi-insulating ZnO host is achieved in our films, promising with regard to magnetic field sensors or Si-integrated spintronic devices. The effects of thermal annealing are also discussed.
机译:自组装的固相生长纳米晶体嵌入水晶主机矩阵开辟了广阔的视角的耦合的物理性质不同,磁性和半导体。报告脉冲激光器发展的房间温度的薄膜组成的分散铁磁股份(0001)制备的数组用一个平面mono-size宽度为1.3纳米,嵌入在氧化锌(0001)水晶矩阵。是成年人电影导致很高的值磁阻,在9 T从-11%不等300 K -19%至50 K,陡峭的下降在低磁场磁阻。建立之间的关系磁阻行为和磁性反应的Co纳米组装。spin-dependent之间电子的隧穿通过和公司发光机制半绝缘性氧化锌主机是在我们实现的电影,承诺对磁场传感器或Si-integrated自旋电子元件。热退火的影响进行了讨论。

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