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High repetition granular Co/Pt multilayers with improved perpendicular remanent magnetization for high-density magnetic recording
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作者 李智 张昆 +7 位作者 杜奥 张洪超 陈伟斌 徐宁 郝润润 颜世申 赵巍胜 冷群文 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第2期405-410,共6页
Thanks to the strong perpendicular magnetic anisotropy(PMA), excellent processing compatibility as well as novel spintronic phenomenon, Co/Pt multilayers have been attracting massive attention and widely used in magne... Thanks to the strong perpendicular magnetic anisotropy(PMA), excellent processing compatibility as well as novel spintronic phenomenon, Co/Pt multilayers have been attracting massive attention and widely used in magnetic storage.However, reversed magnetic domains come into being with the increasing layer repetition ‘N’ to reduce magneto-static energy, resulting in the remarkable diminishment of the remanent magnetization(Mr). As a result, the product of Mrand thickness(i.e., the remanent moment-thickness product, Mrt), a key parameter in magnetic recording for reliable data storing and reading, also decreases dramatically. To overcome this issue, we deposit an ultra-thick granular [Co/Pt]80multilayer with a total thickness of 68 nm on granular SiNxbuffer layer. The Mrt value, Mrto saturation magnetization(Ms) ratio as well as out of plane(OOP) coercivity(Hcoop) are high up to 2.97 memu/cm^(2), 67%, and 1940 Oe(1 Oe = 79.5775 A·m^(-1)),respectively, which is remarkably improved compared with that of continuous [Co/Pt]80multilayers. That is because large amounts of grain boundaries in the granular multilayers can efficiently impede the propagation and expansion of reversed magnetic domains, which is verified by experimental investigations and micromagnetic simulation results. The simulation results also indicate that the value of Mrt, Mr/Msratio, and Hcoopcan be further improved through optimizing the granule size, which can be experimentally realized by manipulating the process parameter of SiNxbuffer layer. This work provides an alternative solution for achieving high Mrt value in ultra-thick Co/Pt multilayers, which is of unneglectable potential in applications of high-density magnetic recording. 展开更多
关键词 granular Co/Pt multilayers perpendicular magnetic anisotropy remanent moment-thickness product magnetic recording
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隧穿磁阻传感器研究进展 被引量:7
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作者 周子童 闫韶华 +1 位作者 赵巍胜 冷群文 《物理学报》 SCIE EI CAS CSCD 北大核心 2022年第5期327-343,共17页
传感器作为物联网技术的基石,在人们的生产生活中发挥着重大作用.其中,基于隧穿磁阻效应(tunneling magnetoresistance,TMR)的磁传感器具有灵敏度高、尺寸小、功耗低等优点,在导航定位、生物医学、电流检测和无损检测等领域具有极大的... 传感器作为物联网技术的基石,在人们的生产生活中发挥着重大作用.其中,基于隧穿磁阻效应(tunneling magnetoresistance,TMR)的磁传感器具有灵敏度高、尺寸小、功耗低等优点,在导航定位、生物医学、电流检测和无损检测等领域具有极大的应用前景.本综述以TMR传感器技术路线的发展为核心,囊括了从基本传感单元到三维空间磁场检测,再到实际应用的多个研究重点.首先,介绍了TMR传感器发展历程并阐明其基本工作原理,讨论了提高单个传感单元磁隧道结输出线性度的方法.接下来,详细介绍了传感器的重要电路结构—惠斯通电桥,以及制备TMR全桥结构的多种工艺方法.进一步,从三维空间磁场检测这一市场需求入手,深入讨论了基于TMR传感器的三维传感结构的设计和制备方法.同时,以传感器灵敏度和噪声水平这两大基本性能为切入点,列举了TMR传感器性能的优化方案.最后,本文对TMR传感器的应用展开了详细介绍,以自旋麦克风,生物传感器两个新兴应用为例,对TMR传感器未来在物联网中的发展和应用进行了展望. 展开更多
关键词 隧穿磁阻传感器 线性化方法 磁传感器噪声 智能应用
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