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Current-perpendicular-to-plane transport properties of 2D ferromagnetic material CrTe_(2)
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作者 Jin Wang Yu Liu +6 位作者 Taikun Wang Yongkang Xu ShuanghaiWang Kun He Yafeng Deng Pengfei Yan Liang He 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第9期535-539,共5页
Heterostructures of van der Waals(vdW)ferromagnetic materials have become a focal point in research of lowdimensional spintronic devices.The current direction in spin valves is commonly perpendicular to the plane(CPP)... Heterostructures of van der Waals(vdW)ferromagnetic materials have become a focal point in research of lowdimensional spintronic devices.The current direction in spin valves is commonly perpendicular to the plane(CPP).However,the transport properties of the CPP mode remain largely unexplored.In this work,current-in-plane(CIP)mode and CPP mode for CrTe_(2) thin films are carefully studied.The temperature-dependent longitudinal resistance transitions from metallic(CIP)to semiconductor behavior(CPP),with the electrical resistivity of CPP increased by five orders of magnitude.More importantly,the transport properties of the CPP can be categorized into a single-gap tunneling-through model with the activation energy(Ea)of1.34 meV/gap at 300–150 K,the variable range hopping model with a linear negative magnetoresistance at 150–20 K,and weak localization region with a nonlinear magnetic resistance below 20 K.This study explores the vertical transport in CrTe_(2) materials for the first time,contributing to understand its unique properties and to pave the way for its potential in spin valve devices. 展开更多
关键词 2D vdW CrTe_(2) current-perpendicular-to-plane negative magnetic resistance
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