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报告题目:
材料院《材料科学论坛》:Integrated Multiferroics for Compact and Power Efficient Sensing, Memory, RF and Microwave Electronics
 报告人:
Prof. Nian X. Sun
W.M. Keck Laboratory for Integrated Ferroics, and Electrical and 
Computer Engineering Department, Northeastern University, USA
报告时间:
2015-10-15 16:00
报告地点:
清华大学材料学院(逸夫技术科学楼3-202房间)
主办单位:
材料院《材料科学论坛》联系人:林元华老师 62773741
  简介:

Abstract
The coexistence of electric polarization and magnetization in multiferroic materials provides great opportunities for realizing magnetoelectric coupling, including electric field control of magnetism, or vice versa, through a strain mediated magnetoelectric coupling in layered magnetic/ferroelectric multiferroic heterostructures [1-8]. Strong magnetoelectric coupling has been the enabling factor for different multiferroic devices, which however has been elusive, particularly at RF/microwave frequencies.In this presentation, I will cover the most recent progress on new integrated multiferroic devices for sensing, memory, RF and microwave electronics, including novel RF NEMS magnetoelectric resonators with picoTesla sensitivity for DC and RFmagnetic fields, and novel GHz magnetic and multiferroic inductors with a wide operation frequency range of 0.3~3GHz, and a high quality factor of close to 20, anda voltage tunableinductanceof 50%~150%. At the same time, we will demonstrateother voltage tunablemultiferroic devices, including voltage tunable multiferroic bandpass filters, tunable bandstop filters, tunable phase shifters, magnetoelectric random access memory, etc.These novel integrated multiferroic devices show great promise for applications compact, lightweight and power efficient sensing, memory, RF and microwave integrated electronics.
1. N.X. Sun and G. Srinivasan, SPIN, 02, 1240004 (2012); 2. J. Lou, et al., Advanced Materials, 21, 4711 (2009); 3. . J. Lou, et al. Appl. Phys. Lett. 94, 112508 (2009) 4; M. Liu, et al. Advanced Functional Materials, 21, 2593 (2011); 5. T. Nan, et al. Scientific Reports, 3, 1985 (2013); 6. M. Liu, et al. Advanced Materials, 25, 1435 (2013); 7M. Liu, et al. Advanced Functional Materials, 19, 1826 (2009). 8. Ziyao Zhou, et al.Nature Communications, 6, 6082 (2015).

Short Bio:
Nian Sun is professor at the Electrical and Computer Engineering Department, and Director of the W.M. Keck Laboratory for Integrated Ferroics, Northeastern University. He received his Ph.D. degree from Stanford University. Prior to joining Northeastern University, he was a Scientist at IBM and Hitachi Global Storage Technologies. Dr. Sun was the recipient of the NSF CAREER Award, ONR Young Investigator Award, the SørenBuus Outstanding Research Award, etc. His research interests include novel magnetic, ferroelectric and multiferroic materials, devices and subsystems. He has over 180 publications and over 20 patents and patent disclosures. One of his papers was selected as the “ten most outstanding full papers in the past decade (2001~2010) in Advanced Functional Materials”. Dr. Sun has given over 100 plenary or invited presentations and seminars in national and international conferences and universities. He is an editor of IEEE Transactions on Magnetics, and a fellow of the Institute of Physics, and of the Institution of Engineering and Technology.

 

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