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国家自然科学基金(51231004)

作品数:5 被引量:0H指数:0
相关作者:潘峰高双宋成曾飞更多>>
相关机构:教育部清华大学更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划国家高技术研究发展计划更多>>
相关领域:理学自动化与计算机技术一般工业技术更多>>

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Electrical control of antiferromagnetic metal up to 15 nm
2016年
Manipulation of antiferromagnetic(AFM) spins by electrical means is on great demand to develop the AFM spintronics with low power consumption. Here we report a reversible electrical control of antiferromagnetic moments of FeMn up to 15 nm, using an ionic liquid to exert a substantial electric-field effect. The manipulation is demonstrated by the modulation of exchange spring in[Co/Pt]/FeMn system, where AFM moments in FeMn pin the magnetization rotation of Co/Pt. By carrier injection or extraction,the magnetic anisotropy of the top layer in FeMn is modulated to influence the whole exchange spring and then passes its influence to the [Co/Pt]/FeMn interface, through a distance up to the length of exchange spring that fully screens electric field. Comparing FeMn to IrMn, despite the opposite dependence of exchange bias on gate voltages, the same correlation between carrier density and exchange spring stiffness is demonstrated. Besides the fundamental significance of modulating the spin structures in metallic AFM via all-electrical fashion, the present finding would advance the development of low-power-consumption AFM spintronics.
PengXiang ZhangGuFan YinYuYan WangBin CuiFeng PanCheng Song
关键词:铁磁金属自旋电子学弹簧刚度电场效应载流子注入
Electrical control of magnetism in oxides
2016年
Recent progress in the electrical control of magnetism in oxides,with profound physics and enormous potential applications,is reviewed and illustrated.In the first part,we provide a comprehensive summary of the electrical control of magnetism in the classic multiferroic heterostructures and clarify the various mechanisms lying behind them.The second part focuses on the novel technique of electric double layer gating for driving a significant electronic phase transition in magnetic oxides by a small voltage.In the third part,electric field applied on ordinary dielectric oxide is used to control the magnetic phenomenon originating from charge transfer and orbital reconstruction at the interface between dissimilar correlated oxides.At the end,we analyze the challenges in electrical control of magnetism in oxides,both the mechanisms and practical applications,which will inspire more in-depth research and advance the development in this field.
宋成崔彬彭晶晶毛海军潘峰
关键词:电气控制电压驱动电荷转移双电层
阳离子迁移型阻变存储材料与器件研究进展
2016年
硅基闪存是当前半导体市场的主流非易失性存储器,但其小型化日益接近物理极限.阳离子迁移型阻变存储器是下一代高速、高密度和低功耗非易失性存储器的有力竞争者之一,近些年受到科学界和工业界的广泛关注.本文从材料、阻变机理和器件性能3个方面综述了阳离子迁移型阻变存储器的研究进展,其中材料部分包括电极材料和存储介质,阻变机理部分包括金属导电细丝的存在、生长模式和生长动力学,而器件性能部分包括开关比、擦写速度、擦写功耗、循环耐受性、数据保持特性以及器件小型化潜力.最后,对本领域的未来研究重点进行了展望.
高双曾飞宋成潘峰
关键词:氧化还原反应非易失性存储器
Magnetoresistive sensors with hybrid Co/insulator/ZnO:Co junctions
2013年
Magnetic tunnel junctions(MTJs),as the seminal spintronic devices,are expected for applications in magnetoresistive sensors due to their large magnetoresistance(MR) and high field sensitivity.Two hybrid Co/insulator/ZnO:Co junctions were fabricated with two different barriers to investigate the magneto-transport properties.Experimental results indicate that,both Co/MgO/ZnO:Co and Co/ZnO/ZnO:Co junctions show the positive and nearly linear MR,and their tunnel magnetoresistances(TMR) are 21.8% and 13.6%,respectively,when the current is applied perpendicular to the film plane under the magnetic field of 2 T at 4 K.The nonlinearity of MR is less than 1% within the magnetic field(H) of 1 kOe < H < 12 kOe at low temperature,making them attractive as magnetoresistive sensors.The higher MR of Co/MgO/ZnO:Co junctions is due to the superior spin filtering effect and larger effective barrier height of the MgO barrier.This linear MR characteristic of Co/insulator/ZnO:Co structures shows a promising future on the applications of diluted magnetic semiconductors in magnetoresistive sensors.
Guang ChenCheng SongFeng Pan
关键词:磁阻传感器路口
Controlling Ion Conductance and Channels to Achieve Synapticlike Frequency Selectivity
2015年
Enhancing ion conductance and controlling transport pathway in organic electrolyte could be used to modulate ionic kinetics to handle signals. In a Pt/Poly(3-hexylthiophene-2,5-diyl)/Polyethylene?Li CF3SO3/Pt hetero-junction, the electrolyte layer handled at high temperature showed nano-fiber microstructures accompanied with greatly improved salt solubility. Ions with high mobility were confined in the nano-fibrous channels leading to the semiconducting polymer layer,which is favorable for modulating dynamic doping at the semiconducting polymer/electrolyte interface by pulse frequency.Such a device realized synaptic-like frequency selectivity, i.e., depression at low frequency stimulation but potentiation at high-frequency stimulation.
Siheng LuFei ZengWenshuai DongAo LiuXiaojun LiJingting Luo
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