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闵泰教授学术报告

  目:Road Beyond CMOS

报告人:闵泰 教授 (千人计划学者,西安交通大学)

  间:2015922日(周二)上午1030

  点:材料学院报告厅(教2-224

      

AbstractFor past 50 years, charge based silicon technology and scaling law (Moore’s Law) have been the fundamental driver of computational technology, catalyst for the emergence of the Digital Age. In this “no trade-off” era, consistent exponential performance growth is sustained by vigorous feature scaling, while computation is kept utilizing the Boolean logic and Von Neumann architecture system, achieving exact calculation and communication gain through noise suppression. However, as the technology node reaches beyond 10 nm, the complexity of Si-based transistor has increased tremendously and become cost-prohibitive, new functional material needs to be developed. All industry-developed countries and world major semiconductor companies are actively searching for the next “Genome” material to replace Si. Currently, the low dimensional physical material system like Graphene, MX2, topological insulator, ultra-thin spintronic thin film system are being eagerly explored as candidates which promises many revolutionary ways of future computing.          

 

专家简介:闵泰,1993年获美国明尼苏达大学电机系博士学位;1993年至2015年在国际一流半导体企业任职,历任资深总监、总监、经理、主任工程师、高级工程师;2011年入选国家“千人计划”,任西安交通大学材料学院教授。主要研究领域包括半导体器件技术、存储器和传感器、自旋电子学效应及应用。成功研发出一系列新型半导体器件产品( AMR Spin-Valve, MRAM);领导国际微电子研究中心( IMEC )研发团队,成功研发出业界领先的sub-20nm STT-MRAMSpintronics 技术 ,2014年发表了IMEC第一篇IEDM 论文,该研发获评IMEC 3030项杰出成果之一;领导TDK公司研发团队,成功研发出业界领先的新型存储器STT-MRAMField-MRAM产品;拥有66项美国专利。

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