中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Giant spin-torque diode sensitivity in the absence of bias magnetic field

文献类型:期刊论文

作者Fang, B(方彬); Carpentieri, M; Hao, XJ; Jiang, HW; Katine, JA; Krivorotov, IN; Ocker, B; Langer, J; Wang, KL; Zhang, BS(张宝顺)
刊名NATURE COMMUNICATIONS
出版日期2016
卷号7
通讯作者Zeng, ZM(曾中明)
英文摘要Microwave detectors based on the spin-torque diode effect are among the key emerging spintronic devices. By utilizing the spin of electrons in addition to charge, they have the potential to overcome the theoretical performance limits of their semiconductor (Schottky) counterparts. However, so far, practical implementations of spin-diode microwave detectors have been limited by the necessity to apply a magnetic field. Here, we demonstrate nanoscale magnetic tunnel junction microwave detectors, exhibiting high-detection sensitivity of 75,400 mV mW(-1) at room temperature without any external bias fields, and for low-input power (micro-Watts or lower). This sensitivity is significantly larger than both state-of-the-art Schottky diode detectors and existing spintronic diodes. Micromagnetic simulations and measurements reveal the essential role of injection locking to achieve this sensitivity performance. This mechanism may provide a pathway to enable further performance improvement of spin-torque diode microwave detectors.
关键词[WOS]TUNNEL-JUNCTIONS ; ROOM-TEMPERATURE ; POLARIZED CURRENT ; MAGNETORESISTANCE ; DRIVEN ; OSCILLATOR
收录类别SCI ; EI
语种英语
WOS记录号WOS:000373829100001
源URL[http://ir.sinano.ac.cn/handle/332007/4889]  
专题苏州纳米技术与纳米仿生研究所_纳米加工公共平台
推荐引用方式
GB/T 7714
Fang, B,Carpentieri, M,Hao, XJ,et al. Giant spin-torque diode sensitivity in the absence of bias magnetic field[J]. NATURE COMMUNICATIONS,2016,7.
APA Fang, B.,Carpentieri, M.,Hao, XJ.,Jiang, HW.,Katine, JA.,...&Zeng, ZM.(2016).Giant spin-torque diode sensitivity in the absence of bias magnetic field.NATURE COMMUNICATIONS,7.
MLA Fang, B,et al."Giant spin-torque diode sensitivity in the absence of bias magnetic field".NATURE COMMUNICATIONS 7(2016).

入库方式: OAI收割

来源:苏州纳米技术与纳米仿生研究所

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