from    
to    
search  

 


High-resolution Crvo-EM Studies of Amyloid Fibrils in Neurodegenerative Diseases
Recent Advances of Phosphorescent Metal Complexes
环境学术沙龙第702期:城市大气新粒子生成与生长
最优潮流的可行性恢复映射深度神经网络
报告题目:
清华大学材料科学与工程研究院《材料科学论坛》:Spin-orbit technologies: memory switching to THz generation
 报告人:
Hyunsoo Yang
Department of Electrical and Computer Engineering, National University
of Singapore
报告时间:
2018-10-15 15:30
报告地点:
清华大学逸夫技术科学楼A512报告厅
主办单位:
材料院《材料科学论坛》:宋成老师 62781275
  简介:

清华大学材料科学与工程研究院《材料科学论坛》

学术报告

报告题目:Spin-orbit technologies: memory switching to THz generation

报告人:Hyunsoo Yang(Department of Electrical and Computer Engineering, ?National University of Singapore)

报告时间:2018年10月15日(周一) 下午3:30

报告地点:清华大学逸夫技术科学楼A512报告厅

联系人:宋成老师 62781275

报告摘要:
Current induced spin-orbit torques (SOTs) provide a new ?way to manipulate the magnetization. We first try to understand ?various spin textures. In order to probe spin textures, we utilize the ?bilinear magnetoelectric resistance, photovoltage microscopy for ?topological insulators, and Lorentz transmission electron microscopy ?for imaging of chiral spin textures, skyrmions in an exchange-coupled ?Co/Pd multilayer.
We then utilize those spin textures for ?magnetization switching. We find that a full sign reversal of SOTs ?occurs as the oxygen bonding increases in Pt/CoFeB/MgO, which ?evidences an interfacial SOT mechanism. We show much enhanced current ?induced SOTs from Co/Pd multilayers , ferrimagnetic CoGd systems , a ?topological insulator Bi2Se3 as well as an oxide heterostructure ?SrTiO3/LaAlO3 , which generate strong spin currents to switch the ?magnetization. In order to understand detailed switching SOT switching ?mechanism, time resolved SOT spin dynamics is probed, and oscillatory ?SOT switching induced by field-like torques is measured. We propose a ?field-free SOT switching scheme using one domain wall motion in an ?anti-notch structure. Finally, we discuss the generation of THz for ?heavy metal/ferromagnet structures using SOTs.

报告人简介:
Hyunsoo Yang worked at C&S technology, LG Electronics ?in San Jose, and Intelligent Fiber Optic Systems, California after his ?Bachelor degree from Seoul National University in Korea. He received ?his Master and Doctorate from Stanford University. He worked on ?optoelectronic devices for fiber communication at Stanford University. ?From 2004-2007, he was at IBM-Stanford Spintronic Science and ?Applications Center with Dr. Stuart Parkin. He is currently a ?Globalfoundries Chaired associate professor in the Department of ?Electrical and Computer Engineering, National University of Singapore ?(NUS), and working on various magnetic materials and devices for ?spintronics applications.
Prof. Yang has authored 170 journal ?articles in peer-reviewed journals, including book chapters and ?invited review articles. He has given more than 100 invited ?presentations and hold 15 issued patents on spintronics, magnetism, ?device physics, nano-materials, topological devices, and ?optoelectronics. He has won several awards including an Outstanding ?Dissertation Award for 2006 from the American Physical Society (GMAG) ?and IEEE Magnetics Society
Distinguished Lecturers for 2019.


?

今日相关信息
Reinforcement Learning for Intelligen...
A Pass towards Innovative Flow Field ...
环境学术沙龙第455期:A Molecular Scale...
 
同类别相关信息
超分子聚合与可循环再生材料
铁,铁死亡,与阿尔兹海默病
新颖有机大环化合物及功能分子组装
面向高比能电池材料的表界面工程
高电压固态电池用聚合物基固态电解质
学术活动