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首页> 外文期刊>Journal of rare earths >Electrical and Magnetic Properties of Bilayer Manganites La_(1.4)Sr_(1.6)Mn_(1.96)TE_(0.04)O_7 (TE = Mn, Fe, Ti, Nb)
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Electrical and Magnetic Properties of Bilayer Manganites La_(1.4)Sr_(1.6)Mn_(1.96)TE_(0.04)O_7 (TE = Mn, Fe, Ti, Nb)

机译:双层锰La_(1.4)Sr_(1.6)Mn_(1.96)TE_(0.04)O_7(TE = Mn,Fe,Ti,Nb)的电磁性能

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摘要

The electrical and magnetic properties of bilayer manganites La_(1.4)Sr_(1.6)Mn_(1.96)TE_(0.04)O_7(TE =Mn, Fe, Ti, Nb) were investigated. Doping caused obvious changes in electrical and magnetic behaviors such as decrease of insulator-metal transition and magnetic transition temperatures, increase of peak resistivity, and different magnetoresistance effect. These changes had a significant degree of correlation with the valence of doped ions. From Fe, Ti to Nb doping, the effect was doubly stronger. The results could be well understood by considering the different destructions on double-exchange interaction and different influences on lattice distortion caused by Fe, Ti and Nb doping. The temperature dependence of magnetization measured at high field showed that the influence of doping was greatest near three-dimensional magnetic transition temperature of parent phase.
机译:研究了双层锰La_(1.4)Sr_(1.6)Mn_(1.96)TE_(0.04)O_7(TE = Mn,Fe,Ti,Nb)的电和磁性能。掺杂引起电和磁行为的明显变化,例如绝缘体-金属转变温度和磁转变温度降低,峰值电阻率增加以及不同的磁阻效应。这些变化与掺杂离子的价态具有显着的相关性。从Fe,Ti到Nb掺杂,效果都更强。通过考虑双交换相互作用的不同破坏以及Fe,Ti和Nb掺杂对晶格畸变的不同影响,可以很好地理解结果。在高场下测得的磁化强度对温度的依赖性表明,在母相的三维磁转变温度附近,掺杂的影响最大。

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