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用于太阳能光纤照明系统的空心反共振反射光纤 被引量:4
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作者 常晶晶 高伟霞 于荣金 《光纤与电缆及其应用技术》 2008年第4期29-30,36,共3页
在分析反共振反射光纤的导光机理和传输特性的基础上,提出了一种新型的空心反共振反射光纤。通过传输矩阵法计算此种光纤的传输特性,证明这种新型的光纤更适合太阳能光纤照明系统的光线传送,为太阳光的传输提供了一种新途径。
关键词 空心光纤 反共振结构 传输矩阵法 太阳能光纤照明系统
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Giant spin torque efficiency in single-crystalline antiferromagnet MnAu films
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作者 Shaohai Chen Xinyu Shu +6 位作者 Jing Zhou Chenghang Zhou Qidong Xie Tieyang Zhao Liang Liu Weinan Lin Jingsheng Chen 《Science China Materials》 SCIE EI CAS CSCD 2021年第8期2029-2036,共8页
Antiferromagnetic (AFM) materials have attracted wide attention in spin-orbit torque (SOT)-based spintronic due to its abundant spin-dependent properties and unique advantage of immunity against external field perturb... Antiferromagnetic (AFM) materials have attracted wide attention in spin-orbit torque (SOT)-based spintronic due to its abundant spin-dependent properties and unique advantage of immunity against external field perturbations.To act as the charge-to-spin conversion source in energy-saving spintronic devices,it is of great importance for the AFM material to possess a large spin torque efficiency(ξDL).In this work,using the spin torque ferromagnetic resonance (ST-FMR) technique and a Mn2Au/Ni Fe(Py) bilayer system,we systemically study the ξDLof AFM Mn2Au films with different crystal structures.Compared with polycrystalline Mn2Au with effective ξDL<0.051,we show a much larger ξDLof~0.333 in single-crystal Mn2Au,which arises from the large spin Hall conductivity instead of electrical resistivity.Moreover,with a further contribution of interfacial effects,the effective ξDLof single-crystalline Mn2Au/Py system increases to 0.731,which is more than two times larger than the value of ~0.22 reported for the Mn2Au/CoFeB system.By utilizing the largeξDLof Mn2Au in a perpendicularly magnetized Mn Ga/Mn2Au system,energy-efficient deterministic magnetization switching with a current density at ~10^(6)A cm^(-2)is achieved.Our results reveal a significant potential of Mn2Au as an efficient SOT source and shed light on its application in future AFM material-based SOT integration technology. 展开更多
关键词 ANTIFERROMAGNETIC spin torque efficiency electrical magnetization switching spin torque ferromagnetic resonance
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