Wang Liqian, Hu Zhongqiang, Zhu Yuanyuan, Xian Dan, Cai Jialin, Guan Mengmeng, Wang Chenying, Duan Junbao, Wu Jingen, Wang Zhiguang, Zhou Ziyao, Jiang Zhuang-De, Zeng Zhongming, Liu Ming
Electronic Materials Research Laboratory, Key Laboratory of the Ministry of Education & International Center for Dielectric Research, School of Electronic Science and Engineering, State Key Laboratory for Mechanical Behavior of Materials , Xi'an Jiaotong University , Xi'an 710049 , China.
Collaborative Innovation Center of High-End Manufacturing Equipment , Xi'an Jiaotong University , Xi'an 710049 , China.
ACS Appl Mater Interfaces. 2020 Feb 19;12(7):8855-8861. doi: 10.1021/acsami.9b20038. Epub 2020 Feb 6.
The operation mechanism of giant magnetoresistance (GMR) sensors relies on the linear response of the magnetization direction to an external magnetic field. Since the magnetic anisotropy of ferromagnetic layers can be manipulated by a strain-mediated magnetoelectric coupling effect, we propose a tunable GMR magnetic field sensor design that allows for voltage tuning of the linear range and sensitivity. A spin valve structure Ru/CoFe/Cu/CoFe/IrMn/Ru is grown on a PMN-PT (011) substrate, and the magnetization directions of ferromagnetic layers can be controlled by an electric field. An adjustable linear magnetoresistance is therefore induced. Based on the magnetoelectric coupling effect and spin valve, we prepared tunable GMR magnetic field sensors with bridge structures. The linear sensing range of a DC magnetic field is enhanced 6 times by applying an electric field of 14 kV/cm. The electrically tunable GMR sensor fulfills the requirements to work at different magnetic field ranges in the same configuration, therefore exhibiting great potential for applications in the Internet of things.
巨磁电阻(GMR)传感器的工作机制依赖于磁化方向对外加磁场的线性响应。由于铁磁层的磁各向异性可通过应变介导的磁电耦合效应进行调控,我们提出了一种可调谐GMR磁场传感器设计,该设计可实现线性范围和灵敏度的电压调谐。在PMN-PT(011)衬底上生长自旋阀结构Ru/CoFe/Cu/CoFe/IrMn/Ru,铁磁层的磁化方向可由电场控制。因此,可诱导出可调谐的线性磁电阻。基于磁电耦合效应和自旋阀,我们制备了具有桥式结构的可调谐GMR磁场传感器。通过施加14 kV/cm的电场,直流磁场的线性传感范围提高了6倍。这种电可调谐GMR传感器满足了在同一配置下于不同磁场范围工作的要求,因此在物联网应用中展现出巨大潜力。