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离子注入法增强YIG单晶薄膜的磁光效应
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作者 欧阳嘉 何华辉 《功能材料》 EI CAS CSCD 1995年第2期155-157,共3页
利用离子注入技术,将Ce ̄(+3)离子注入到YIG单晶薄膜中,剂量为10 ̄(14)~10 ̄(16)ions/cm ̄2,能量为500keV。对注入前后的样品进行光吸收谱测量,发现注入后的样品光吸收有明显的增加,且样品颜... 利用离子注入技术,将Ce ̄(+3)离子注入到YIG单晶薄膜中,剂量为10 ̄(14)~10 ̄(16)ions/cm ̄2,能量为500keV。对注入前后的样品进行光吸收谱测量,发现注入后的样品光吸收有明显的增加,且样品颜色变深,对样品进行高温退火,可有效地降低光损耗。离子注入样品磁光特性测量表明Ce ̄(+3)薄膜有很大的磁光增强作用,且法拉第旋转角随注入剂量增加而增大。 展开更多
关键词 效应 离子注入 YIG单晶薄膜 磁光增强
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含镍钡铁氧体增强磁光效应的微观机理研究
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作者 张锡娟 邵争鸣 汪颖梅 《扬州师院学报(自然科学版)》 CSCD 1996年第4期42-45,共4页
计算了镍离子取代后的钡铁氧体在不同的自旋-轨道耦合作用系数下的 Faraday 偏转角,研究了它与温度及超交换作用能的关系.结果表明,基组态的自旋-轨道耦合和交换作用场对 Faraday 偏转角起主要作用,一般与温度的关系不大。
关键词 钡铁氧体 镍离子 磁光增强效应 微观机理
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A novel microwave absorber——BaAl_2Fe_(10)O_(19)/poly(m-toluidine) composite:Preparation and electromagnetic properties 被引量:4
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作者 CHEN KeYu XU QingQing +4 位作者 LI LiangChao GONG PeiJun CHEN HaiFeng XIAO QiuShi Xu Feng 《Science China Chemistry》 SCIE EI CAS 2012年第7期1220-1227,共8页
BaFe10A12O19/poly(m-toluidine) (BFA/PMT) composites were synthesized by in-situ polymerization of m-toluidine in the presence of BaFe10Al2O19 particles. The structure, composition and morphology of the obtained sa... BaFe10A12O19/poly(m-toluidine) (BFA/PMT) composites were synthesized by in-situ polymerization of m-toluidine in the presence of BaFe10Al2O19 particles. The structure, composition and morphology of the obtained samples were characterized by using XRD, FT-IR, UV-visible spectroscopy, SEM and TEM techniques. Their electrical conductivity, magnetic property and microwave absorbing property were measured by the four-probe meter, the vibrating sample magnetometer and the vector network analyzer, respectively. The results indicated that BFA particles were coated effectively by PMT polymer and some interactions between PMT and BFA particles existing in the composites. The conductivity of BFA/PMT composite is smaller than that of pure polymers and its saturation magnetization is a little smaller than that of pure BFA. The influence of the constitution and film thickness of absorbent on its microwave absorbing property is evident. The microwave absorbing properties of the BFA/PMT composites are better than those of pure BFA and PMT. When optimizing the mass rate of BFA/PMT to 0.3, the absorbent with 2 mm film thickness has the minimum reflection loss of -28.26 dB at approximate 14.24 GHz, and the maximum available bandwidth of 8.8 GHz, respectively. The results show that these composites can be used as advancing absorption and shielding materials due to their favorable microwave absorbing property. 展开更多
关键词 COMPOSITES in-situ polymerization microwave absorbing property
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