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Magnetically Induced Carrier Distribution in a Composite Rod of Piezoelectric Semiconductors and Piezomagnetics

机译:压电半导体和压电磁性复合杆中的磁诱导的载体分布

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摘要

In this work, we study the behavior of a composite rod consisting of a piezoelectric semiconductor layer and two piezomagnetic layers under an applied axial magnetic field. Based on the phenomenological theories of piezoelectric semiconductors and piezomagnetics, a one-dimensional model is developed from which an analytical solution is obtained. The explicit expressions of the coupled fields and the numerical results show that an axially applied magnetic field produces extensional deformation through piezomagnetic coupling, the extension then produces polarization through piezoelectric coupling, and the polarization then causes the redistribution of mobile charges. Thus, the composite rod exhibits a coupling between the applied magnetic field and carrier distribution through combined piezomagnetic and piezoelectric effects. The results have potential applications in piezotronics when magnetic fields are relevant.
机译:在这项工作中,我们研究了由压电半导体层和施加的轴向磁场下的两个压电层组成的复合杆的行为。基于压电半导体和压电磁性的现象学理论,开发了一维模型,从中获得了分析溶液。耦合字段和数值结果的显式表达式示出了轴向施加的磁场通过压电耦合产生延伸变形,然后通过压电耦合产生偏振,并且偏振导致移动电荷的再分配。因此,复合杆通过组合压电磁性和压电效应在施加的磁场和载体分布之间表现出耦合。当磁场相关时,结果具有压电季核苷的潜在应用。

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