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Effect of applied magnetic field on the rectifying characteristics in self-doped La0.9MnO3/0.8 wt Nb-SrTiO3 heteroepitaxial junctions

机译:施加磁场对自掺杂La0.9mnO3 / 0.8wt%Nb-srTiO3异质外延结中整流特性的影响

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摘要

The epitaxial self-doped La0.9MnO3 thin film was deposited on a 0.8 wt %Nb-doped SrTiO3 substrate by pulse laser deposition method to form a bilayer p-n junction with an area of 8 mm2. The isothermal current-voltage loops measured from 10 to 380 K with an interval of 10 K in applied magnetic fields up to 7 T show typical temperature-dependent rectifying characteristic and asymmetrical hysteresis. The effect of magnetic field on the rectifying property is very small for the temperature above 150 K and a strong asymmetrical effect on the rectifying property below 150 K. In the low temperature region, although the diffusive voltage Vd is not affected by the applied magnetic field, the breakdown voltage Vb decreases with the increasing of magnetic field. At 10 K, the relative ratio of voltage [Vb(0)−Vb(7 T)]/Vb(0) is about 14%, showing a magnetically tunable property. These results reveal the great potential of the manganites in configuring artificial devices.
机译:通过脉冲激光沉积法将外延自掺杂的La0.9MnO3薄膜沉积在0.8wt%的Nb掺杂的SrTiO3衬底上,以形成面积为8mm 2的双层p-n结。在高达7 T的外加磁场中,以10 K的间隔测量10至380 K的等温电流-电压环路显示出典型的温度相关的整流特性和不对称磁滞。对于150 K以上的温度,磁场对整流性能的影响很小,而对于150 K以下的温度,磁场对整流性能的强烈不对称影响。在低温区域,尽管扩散电压Vd不受施加的磁场影响,击穿电压Vb随着磁场的增加而减小。在10 K时,电压[Vb(0)-Vb(7 T)] / Vb(0)的相对比率约为14%,显示出磁可调性。这些结果揭示了锰酸盐在构造人造装置中的巨大潜力。

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