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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Modeling the planar configuration of extraordinary magnetoresistance
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Modeling the planar configuration of extraordinary magnetoresistance

机译:模拟非常规磁阻的平面结构

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摘要

Recently the planar version of the extraordinary magnetoresistance (EMR) magnetic field sensor has been constructed and verified in practice. Planar configuration of the EMR device gives many technological advantages, it is simpler than the classic and allows one to build the sensor using electric materials of the new type (such as graphene or topological insulators) much easier. In this work the planar configuration of the EMR sensor is investigated by performing computational simulations using the finite element method (FEM). The computational comparison of the planar and classic configurations of EMR is presented using three-dimensional models. Various variants of the geometry of EMR sensor components are pondered and compared in the planar and classic version. Size of the metal overlap is considered for sensor optimization as well as various semiconductor-metal contact resistance dependences of the EMR signal. Based on computational simulations, a method for optimal placement of electric terminals in a planar EMR device is proposed.
机译:最近,非常规磁阻(EMR)磁场传感器的平面版本已经构建并在实践中得到验证。 EMR设备的平面配置具有许多技术优势,比经典设备更简单,并且使人们可以更轻松地使用新型电子材料(例如石墨烯或拓扑绝缘体)来构建传感器。在这项工作中,通过使用有限元方法(FEM)进行计算仿真来研究EMR传感器的平面配置。使用三维模型对EMR的平面配置和经典配置进行了计算比较。 EMR传感器组件的几何形状的各种变体都经过仔细考虑,并在平面和经典版本中进行了比较。为了传感器优化以及EMR信号对各种半导体-金属接触电阻的依赖性,考虑了金属重叠的大小。基于计算仿真,提出了一种在平面EMR装置中电端子最佳放置的方法。

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