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Thermal hysteresis in low-frequency noise of La0.7Sr0.3Mn0.92Fe0.08O3 thin films at low magnetic field

机译:La0.7Sr0.3Mn0.92Fe0.08O3薄膜在低磁场下的低频噪声热滞回

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摘要

The low-frequency 1/f voltage noise of epitaxial La0.7Sr0.3Mn0.92Fe0.08O3 thin films has been studied as a function of temperature (80-300 K) and magnetic field (up to 1500 G). It is found that the noise power spectral density (PSD) shows a peak at T approximate to 238 K which coincides with the peak temperature of the resistivity, and is below the Curie temperature. When a small magnetic field of 1500 G is applied, the noise PSD shows a large thermal hysteresis and changes with the magnetic history. This thermal hysteresis, lacking at B = 0, is distinctively different from other reported results on manganites without Mn-site doping. The origin of the noise peak at B = 0 is analysed on the basis of the magnetic fluctuation, and the scaling analysis of the normalized noise PSD is consistent with a three-dimensional random-void percolation model. The thermal hysteresis of the noise PSD further supports the assertions of a contribution from magnetic fluctuations and of a spin-dependent conduction process in Fe-doped colossal -magnetoresistance materials. [References: 34]
机译:研究了外延La0.7Sr0.3Mn0.92Fe0.08O3薄膜的低频1 / f电压噪声与温度(80-300 K)和磁场(最大1500 G)的关系。发现噪声功率谱密度(PSD)在T处显示一个峰值,该峰值约为238 K,与电阻率的峰值温度一致,并且低于居里温度。当施加1500 G的小磁场时,噪声PSD会显示出较大的热滞,并且会随磁历史而变化。 B = 0时没有这种热滞现象,这与其他已报道的未掺杂Mn的锰矿的结果明显不同。根据磁波动分析B = 0处的噪声峰值的起源,归一化噪声PSD的缩放分析与三维随机空隙渗流模型一致。噪声PSD的热滞回进一步支持了在Fe掺杂的巨磁阻材料中磁波动和自旋相关的导电过程的影响。 [参考:34]

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