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硅 p-n 结中各向异性磁阻的温度依赖性不对称性

Temperature-Dependent Asymmetry of Anisotropic Magnetoresistance in Silicon p-n Junctions.

作者信息

Yang D Z, Wang T, Sui W B, Si M S, Guo D W, Shi Z, Wang F C, Xue D S

机构信息

Key Laboratory for Magnetism and Magnetic materials of Ministry of Education, Lanzhou University, Lanzhou 730000, China.

The Department of physics, Tongji University, Shanghai 200092, China.

出版信息

Sci Rep. 2015 Sep 1;5:11096. doi: 10.1038/srep11096.

Abstract

We report a large but asymmetric magnetoresistance in silicon p-n junctions, which contrasts with the fact of magnetoresistance being symmetric in magnetic metals and semiconductors. With temperature decreasing from 293 K to 100 K, the magnetoresistance sharply increases from 50% to 150% under a magnetic field of 2 T. At the same time, an asymmetric magnetoresistance, which manifests itself as a magnetoresistance voltage offset with respect to the sign of magnetic field, occurs and linearly increases with magnetoresistance. More interestingly, in contrast with other materials, the lineshape of anisotropic magnetoresistance in silicon p-n junctions significantly depends on temperature. As temperature decreases from 293 K to 100 K, the width of peak shrinks from 90° to 70°. We ascribe these novel magnetoresistance to the asymmetric geometry of the space charge region in p-n junction induced by the magnetic field. In the vicinity of the space charge region the current paths are deflected, contributing the Hall field to the asymmetric magnetoresistance. Therefore, the observed temperature-dependent asymmetry of magnetoresistance is proved to be a direct consequence of the spatial configuration evolution of space charge region with temperature.

摘要

我们报道了硅 p-n 结中存在大的但不对称的磁阻,这与磁金属和半导体中磁阻是对称的这一事实形成对比。随着温度从 293 K 降至 100 K,在 2 T 的磁场下,磁阻从 50%急剧增加到 150%。同时,出现了一种不对称磁阻,其表现为相对于磁场方向的磁阻电压偏移,并随磁阻线性增加。更有趣的是,与其他材料不同,硅 p-n 结中各向异性磁阻的线形显著依赖于温度。当温度从 293 K 降至 100 K 时,峰值宽度从 90°收缩至 70°。我们将这些新颖的磁阻归因于磁场在 p-n 结中诱导出的空间电荷区的不对称几何形状。在空间电荷区附近,电流路径发生偏转,为不对称磁阻贡献了霍尔场。因此,观察到的磁阻随温度变化的不对称性被证明是空间电荷区空间构型随温度演化的直接结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5db6/4555100/ce7067f923aa/srep11096-f1.jpg

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