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研究领域

(1)应用经典有效场理论和量子理论分析极端条件下物质磁性和磁光特性的微观机制,发现极端条件下材料新的磁和磁光特性,开发新的磁光材料和新的应用领域。获得了2011年国家自然科学基金青年基金资助,以及北京市优秀人才项目资助。 (2)将组合合成和高通量筛选技术应用到软磁铁氧体材料的研制中,在较短时间内,成功研制了磁性能较为优越,能使用于较宽频率范围,并具有较好宽温特性的低功耗MnZn铁氧体材料,此方面研究得到了国内外同行的好评,获得了授权国家发明专利2项。

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

Wei Wang, Magnetic and magneto-optical properties of Nd3Ga5O12 in high magnetic fields, Journal of Applied Physics, 102 (2007) 063905. Wei Wang, Xin Qi, and Gongqiang Liu, Magnetic and magneto-optical anisotropies of ytterbium gallium garnet in high magnetic fields, Journal of Applied Physics, 104, 013914 (2008). Wei Wang, and Gongqiang Liu, Analysis on magnetic field dependence of magneto- optical Faraday effect, Journal of Applied Physics, 103 (2008) 073908. Wei Wang, and Jinhui Wang, Development of MnZn ferrites by combinatorial synthesis and high throughput screening method, Journal of Alloys and Compounds, 463 (2008) 112 Wei Wang, Yuan Yue and Deyao Li, Anisotropy of magnetic properties in ferrimagnetic ytterbium iron garnet under high magnetic fields, Journal of Applied Physics, 105 (2009) 083909 Wei Wang, Deyao Li, Properties of exchange interaction in Yb3Fe5O12 under extreme conditions, Journal of magnetism and magnetic materials 321 (2009) 3307 Wei Wang, Yuan Yue and Gongqiang Liu, High field magnetic anisotropy in praseodymium gallium garnet at low temperatures, Journal of alloys and compounds, 509 (2011) 1489-1492.

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