Determination of microscopical parameters of heterogeneous carbon materials

V. Dorosinets, V. A. Borisov
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Abstract

Experimental studies of the temperature dependence of the resistance and magnetoresistance of the composite metal-carbon samples C(Co), which show the effect of weak localization, have been carried out. The magnetoresistance at a temperature T = 2.2 K is alternating, which is explained by the spin-orbit interaction. Analysis of the magnetoresistance curves made it possible to calculate the values of the parameters characterizing the phase loss time in inelastic scattering and the spin-orbit interaction time. For the parameter characterizing the elastic scattering time, the minimum value was estimated.
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非均相碳材料显微参数的测定
对C(Co)复合材料的电阻和磁电阻的温度依赖性进行了实验研究,发现C(Co)的磁电阻表现出弱局部化效应。在温度T = 2.2 K时,磁电阻是交替的,这可以用自旋轨道相互作用来解释。通过对磁阻曲线的分析,可以计算表征非弹性散射中相位损失时间和自旋轨道相互作用时间的参数值。对于表征弹性散射时间的参数,估计了最小值。
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