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Electric-field effects in resistive oxides: facts and artifacts

机译:电阻氧化物中的电场效应:事实和伪像

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Striking non-linear conductivity effects induced by surprisingly low electric-fields in charge-ordered oxides, were reported variously as dielectric breakdown, charge-order collapse, depinning of charge-density-waves or other electronic effects. Our pulsed and d.c. I-V measurements on resistive oxides show that non-linear conductivity of electronic origin at low electric-fields is a rare phenomenon. In the majority of cases we detected no deviations from linearity in pulsed I-V characteristics under fields up to E ~ 500 V/cm. Current-controlled negative-differential-resistance (NDR) and hysteresis were found in d.c. measurements at fields that decrease with increasing temperatures, a behavior typical of Joule heating in materials with negative temperature coefficient of resistivity. For the d.c. I-V characteristics of our samples exhibiting NDR, we found a rather unexpected correlation between ρ(Em) - the resistivity at maximum field (at the onset of NDR) and ρ(E=0) – the ohmic resistivity. The data points for ρ(Em) versus ρ(E=0) obtained from such characteristics of 13 samples (8 manganites, 4 nickelates and one multiferroic) at various ambient temperatures, plotted together on a log-log scale, follow closely a linear dependence with slope one that spans more than five orders of magnitude. This dependence is reproduced by several simple models.
机译:由电荷排序的氧化物中出乎意料的低电场引起的惊人的非线性电导效应,据报道有介电击穿,电荷排序崩溃,电荷密度波的钉扎或其他电子效应。我们的脉冲和直流电电阻氧化物的I-V测量表明,低电场下电子起源的非线性电导率是罕见的现象。在大多数情况下,在E〜500 V / cm的磁场下,我们在脉冲I-V特性中没有发现线性偏差。在直流中发现了电流控制的负微分电阻(NDR)和磁滞现象。在随温度升高而降低的场中进行测量,这是电阻率温度系数为负的材料中焦耳加热的典型行为。对于直流我们的样品表现出NDR的I-V特性,我们发现ρ(Em)–最大场的电阻率(在NDR发生时)与ρ(E = 0)–欧姆电阻率之间存在相当意外的相关性。从13个样品(8个锰,4个镍酸盐和1个多铁性金属)在不同环境温度下的特性获得的ρ(Em)与ρ(E = 0)的数据点,按对数-对数比例绘制,并严格遵循线性关系斜率跨度超过五个数量级的依赖关系。这种依赖性通过几个简单的模型得以再现。

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