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Giant magneto-optical response in H+ irradiated Zn1-xCoxO thin films

机译:H +辐照Zn1-Xcoxo薄膜的巨型磁光响应

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Remarkable improvements in the magneto-optical properties of Zn1-xCoxO thin films were achieved by post-growth hydrogen irradiation at temperatures of 400 degrees C. Hydrogen incorporation increases the magnetic circular dichroism signal resulting in large values of ellipticity and Faraday rotation at room temperature. The hysteretic behavior of the magneto-optical field dependent loops at different sub-bandgap wavelengths indicates an intrinsic ferromagnetic regime. A giant Faraday rotation of 3000 deg cm(-1) was observed at 400 nm. Optical, structural and microstructural characterizations pointed out the Zn substitution by Co, ruling out the presence of noticeable Co-related secondary phases down to the nanoscale. The increased values of saturation magnetization, ellipticity and Faraday rotation have been explained based on an impurity band close to the conduction band minimum, which is induced by Co-V-O (O vacancies) complexes. A phenomenological model founded on such an impurity band and electronic states induced by other Co-defect complexes in the ZnO energy gap allows a thoroughly novel, fine interpretation of the ellipticity spectra.
机译:通过400摄氏度温度的温度氢照射实现Zn1-Xcoxo薄膜的磁光性能显着改善。氢气掺入增加了磁圆形二色信号,导致室温下的椭圆形和法拉第旋转的大值。在不同子带隙波长下磁光场相关环的滞后行为表示固有的铁磁性状态。在400nm下观察到3000℃(-1)的巨型法拉第旋转。光学,结构和微观结构表征指出了CO的Zn替代,将明显的与纳米级的显着的共同相关二次相的存在统治。已经基于靠近导电带最小的杂质带解释的饱和磁化,椭圆形和法拉第旋转的增加,这通过CO-V-O(O空位)配合物诱导。在ZnO能隙中其他共缺陷复合物诱导的这种杂质带和电子状态上的现象学模型允许彻底的新颖,精细地解释椭圆形光谱。

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