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Ferromagnetism in Eu-doped ZnO films deposited by radio-frequency magnetic sputtering

Ferromagnetism in Eu-doped ZnO films deposited by radio-frequency magnetic sputtering
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摘要 This paper reports that Eu-doped ZnO films were successfully deposited on silicon (100) by radio-frequency magnetic sputtering. The x-ray diffraction patterns indicate that Eu substitutes for Zn in the lattice. Ferromagnetic loops were obtained by using superconducting quantum interference device at 10 K and room temperature. No discontinuous change was found in both of the zero-field-cooled and field-cooled curves. The observed ferromagnetism in Eu-doped ZnO can be attributed to a single magnetic phase. The saturation magnetisation decreased remarkably for the Eu-doped ZnO prepared by introducing 5% of oxygen in the sputtering gas or by the post annealing in O2, suggesting that the defects play key roles in the development of ferromagnetism in Eu-doped ZnO films. This paper reports that Eu-doped ZnO films were successfully deposited on silicon (100) by radio-frequency magnetic sputtering. The x-ray diffraction patterns indicate that Eu substitutes for Zn in the lattice. Ferromagnetic loops were obtained by using superconducting quantum interference device at 10 K and room temperature. No discontinuous change was found in both of the zero-field-cooled and field-cooled curves. The observed ferromagnetism in Eu-doped ZnO can be attributed to a single magnetic phase. The saturation magnetisation decreased remarkably for the Eu-doped ZnO prepared by introducing 5% of oxygen in the sputtering gas or by the post annealing in O2, suggesting that the defects play key roles in the development of ferromagnetism in Eu-doped ZnO films.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第9期580-583,共4页 中国物理B(英文版)
基金 supported by the National Natural Science Foundation of China (Grant Nos.10774129 and 60425411) the Ministry of Science and Technology of China
关键词 Eu-doped ZnO films FERROMAGNETISM radio-frequency magnetic sputtering Eu-doped ZnO films, ferromagnetism, radio-frequency magnetic sputtering
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