1. “凝聚态物理之友”科學報告會(2004-1)
報告題目:Using Reflectance to Determine the Mechanism of Superconductivity
報告人:Professor Frank Marsiglio
任職學術單位:加拿大Alberta大學物理系
報告時間:2004年2月24日(星期二)15:00時
報告地點:物理大樓南408教室
報告會組織者:田光善教授 Professor Marsiglio很想同畢業班的同學們在會後一談。
2. “凝聚态物理之友”科學報告會(2004-2)
3. “凝聚态物理之友”科學報告會(2004-3)
報告題目:SiN、SiC納米線中的界面結構,以及納米溫度計研究
報告人:高義華博士
任職學術單位:
報告時間:2004年3月17日下午2:30
報告地點:物理大樓南408
報告會組織者:俞大鵬 62759474 高義華博士簡曆:本科畢業于華中理工大學物理系,後師從中科院電鏡實驗室張澤院士完成博士論文,随後前往日本,與日本著名科學家Bando教授開展了一維納米材料方面的深入研究工作,以第一作者身份在Nature、Science、Applied Physics Letters等國際重要學術刊物上發了一系列非常有意義的研究結果;其一個标志性工作是利用納米碳管和液态金屬填充的方法制備了納米溫度計,發表在nature雜志上,引起廣泛關注。
4. “凝聚态物理之友”科學報告會(2004-4)
報告題目:The Magnetic Phase Diagram of High Temperture Superconductors
報告人:Mike McElfresh博士
任職學術單位:Lawrence Livermore National Laboratory材料科學部主任;Quantum Design公司的資深客戶顧問
報告時間:2004年4月5日(星期一) 下午3:00
報告地點:中307(凝聚态所會議室)
報告會組織者:beat365官方网站凝聚态所
5. “凝聚态物理之友”科學報告會(2004-5)
報告題目:Semiconducting and Piezoelectric Nanobelts, Nanosprings and Nanorings - Synthesis, characterization and properties
報告人:Prof. Wang Zhong Lin
任職學術單位:School of Materials Science and Engineering, Georgia Institute of Technology, Atlanta 30332-0245
報告時間:六月十六日, 10:00-11:30 pm
報告地點:beat365 現代物理中心報告廳
報告會組織者:beat365納米結構與低維物理實驗室舉辦 聯系人:俞大鵬 報告人簡介: Zhong Lin (ZL) Wang received his Ph.D. in Physics from Arizona State University in 1987. He is currently a Regents\' Professor, the Director of the Center for Nanoscience and Nanotechnology in the Georgia Institute of Technology. Dr. Wang has authored and co-authored four scientific reference and textbooks and over 350 journal articles, edited and co-edited eight volumes of books on nanotechnology. He is the world’s top 25 most cited authors in nanotechnology for the last decade (ISI). His works have been cited for over 6000 times. He has received the 2001 S.T. Li prize for Outstanding Contribution in Nanoscience and Nanotechnology, the 2000 Georgia Tech Faculty Research Award, and the 1999 Burton Medal from Microscopy Society of America. His most recent research focuses on oxide nanobelts and nanowires, in-situ techniques for nano-scale measurements, self-assembly nanostructures, fabrication of nano devices, and properties of magnetic nanostructures. http://www.nanoscience.gatech.edu/zlwang/ Abstract of the Report: Nanowire and nanotube based materials have been demonstrated as building blocks for nanocircuits, nanosystems and nano-optoelectronics. Quasi-one-dimensional nanostructures (so called nanobelts or nanoribbons) have been successfully synthesized for semiconducting oxides of zinc, tin, indium, cadmium and gallium, by simply evaporating the desired commercial metal oxide powders at high temperatures [1]. The belt-like morphology appears to be a unique and common structural characteristic for the family of semiconducting oxides with cations of different valence states and materials of distinct crystallographic structures. Using the technique demonstrated for measuring the mechanical properties of carbon nanotubes based on in-situ transmission electron microscopy [2,3], the bending modulus of the oxide nanobelts has been measured, and the nanobelt is shown to be a dual mode nanoresonator for NEMS technology. Field effect transistors [4] and ultra-sensitive nano-size gas sensors [5], nanoresonators and nanocantilevers [6] have also been fabricated based on individual nanobelts. Thermal transport along the nanobelt has also been measured. Very recently, nanobelts, nanorings and nanosprings that exhibit piezoelectric properties have been synthesized, which are potential candidates for nano-scale traducers, actuators and sensors [7, 8, 9]. The discovery of single-crystal perfect nanorings and its “slinky” growth model will be presented [10].
6. “凝聚态物理之友”科學報告會(2004-6)
7. “凝聚态物理之友”科學報告會(2004-7)
8. “凝聚态物理之友”科學報告會(2004-8)
9. “凝聚态物理之友”科學報告會(2004-9)
10. “凝聚态物理之友”科學報告會(2004-10)
11. “凝聚态物理之友”科學報告會(2004-11)
▲2003年凝聚态之友科學報告會一覽 ▲2002年凝聚态之友科學報告會一覽 ▲2001年凝聚态之友科學報告會一覽 |