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Giant electroresistance induced by electric currents in epitaxial thin films of Pr_(0.7)Sr_(0.3)MnO_3

机译:由PR_(0.7)SR_(0.3)MNO_3的外延薄膜中电流引起的电流诱导的巨型电流

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Electric-current induced electroresistance effect has been investigated in epitaxial Pr_(0.7)Sr_(0.3)MnO_3 thin film grown on the (100) SrTiO_3 substrate. A significant change ~38% in the ratio of the peak resistance at different currents with a current density up to ~3.3×10~3 A/cm~2 was achieved. Such an ER effect is more remarkable in comparing with that reported in other manganite oxides with similar current densities. Compared with that of the as-grown films, the electroresistance of the post-annealed films is smaller, while the ER effect (~14%) is obtained. Although the nature behind such an electroresistance effect has not been well understood, the field tunability of the metal/insulator transition and the electroresistance effect induced by currents might be of potential for various applications such as filed effect devices.
机译:在(100)SRTIO_3衬底上生长的外延PR_(0.7)SR_(0.3)MNO_3薄膜中,研究了电流诱导的电流效应。达到电流密度高达约3.3×10〜3A / cm〜2的不同电流的峰值电阻比的显着变化〜38%。在与具有相似电流密度的其他锰氧化物中报道的情况相比,这种ER效应更加显着。与生长薄膜相比,后退火膜的电致电阻较小,而ER效应(〜14%)是较小的。尽管这种电渗透效应背后的性质尚未得到很好的理解,但是电流诱导的金属/绝缘体转变的场可调性和电流引起的电钻效应可能具有诸如归档效果装置的各种应用的潜力。

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