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Effects of Li ion implantation energies on the structure, photoluminescence, and ferromagnetism properties of (Li, Co) co-implanted ZnO films

机译:锂离子注入能量对(Li,Co)共注入ZnO薄膜的结构,光致发光和铁磁性的影响

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摘要

Room temperature ferromagnetism was observed in (Li, Co) co-implanted ZnO films. The implantation energy for Co ions was 400 keV, while for Li ions were 50, 100 and 200 keV, respectively. The ion implantation induced defects and disorder has been observed by the XRD, PL and TEM experiments. For the co-implanted ZnO films with Li ion implantation energies of 100 and 200 keV, the band energy emission disappears and the defect related emission with wavelength of 500-700 nm dominates, which can be attributed to defects introduced by implantation. Co-implanted ZnO Films with Li ion implantation energies of 200 keV show a saturation magnetization value (M_s) of over 9 x 10~(-5) emu and a positive coercive field of 60 Oe. The carrier concentration is not much improved after annealing and in the order of 10~(16) cm~(-3), which suggests that FM does not depend upon the presence of a significant carrier concentration. The origin of ferromagnetism behavior can be explained on the basis of electrons and defects that form bound magnetic polarons, which overlap to create a spin-split impurity band.
机译:在(Li,Co)共注入ZnO薄膜中观察到室温铁磁性。 Co离子的注入能量为400keV,而Li离子的注入能量分别为50、100和200keV。通过XRD,PL和TEM实验已经观察到离子注入引起的缺陷和无序。对于锂离子注入能量分别为100和200 keV的共注入ZnO薄膜,能带发射消失,并且与缺陷相关的波长为500-700 nm的发射占主导,这可以归因于注入引入的缺陷。锂离子注入能量为200 keV的共注入ZnO薄膜的饱和磁化值(M_s)超过9 x 10〜(-5)emu,正矫顽场为60 Oe。退火后,载流子浓度没有太大的改善,大约为10〜(16)cm〜(-3),这表明FM并不取决于显着的载流子浓度。可以根据形成束缚的磁极化子的电子和缺陷来解释铁磁性行为的起源,这些电子和缺陷重叠形成自旋分裂的杂质带。

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    Department of Physics and Development Center for New Materials Engineering and Technology in Universities of Guangdong, Zhanjiang Normal University, Zhanjiang 524048, China;

    Department of Physics and Development Center for New Materials Engineering and Technology in Universities of Guangdong, Zhanjiang Normal University, Zhanjiang 524048, China;

    Department of Physics and Development Center for New Materials Engineering and Technology in Universities of Guangdong, Zhanjiang Normal University, Zhanjiang 524048, China;

    Department of Physics and Development Center for New Materials Engineering and Technology in Universities of Guangdong, Zhanjiang Normal University, Zhanjiang 524048, China;

    Accelerator Laboratory, Department of Physics, Wuhan University, Wuhan 430072, China;

    Accelerator Laboratory, Department of Physics, Wuhan University, Wuhan 430072, China;

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  • 正文语种 eng
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  • 关键词

    ferromagnetism; microstructure; ion implantation; zno;

    机译:铁磁性;微观结构;离子注入;zno;

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