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1.The study on quasi-one-dimensional charge-density-wave (CDW) conductors has ever been one of the most fascinating fields of condensed matter physics, especially of the low dimensional condensed matter physics.
准一维电荷密度波(CDW)导体的研究一直是凝聚态物理,尤其是低维凝聚态物理中人们最感兴趣的前沿课题之一。收藏指正
2.Research Interests: Condensed Matter Physics, Magnetism, Low Temperature Physics, Superconductivity, Electrical Optics, Thin Films, and Nanosize Structures and their Physical Properties. Published about 250 papers.
研究兴趣:凝态物理、磁学、低温、超导、光电、薄膜及奈米等结构之物理特性等。至今已发表学术论文二百五十馀篇。收藏指正
3.Our research programs include theoretical and experimental particle and nuclear physics, cosmology and astrophysics, plasma physics, theoretical and experimental condensed-matter physics, atomic physics, and biophysics.
我们的研究计画包括了理论和实验的粒子与核子物理学、宇宙物理、电浆物理、理论和实验凝态物理、原子物理、生物物理。收藏指正
4.In addition, the researches of the non equilibrium dynamic properties of CDW conductors have become one of the most hotpot of low dimensional condensed matter physics.
另外,对于CDW导体的非平衡动力学性质的研究也是当今低维凝聚态物理研究的热点之一。收藏指正
5.It is the underlying mathematical framework of many fields of physics and chemistry, including condensed matter physics, atomic physics, molecular physics, computational chemistry, quantum chemistry, particle physics, and nuclear physics.
它是许多物理学和化学领域的根本数学框架,包括浓缩物质物理学、原子物理学、分子物理学、计算化学、量子化学、粒子物理学和核子物理学。收藏指正
6.A common problem in theoretical chemistry, condensed matter physics and materials science is the calculation of the time evolution of an atomic scale system where, for example, chemical reactions and/or diffusion occur.
一个在理论化学方面的很普通的问题,涉及到凝聚体物理学、材料科学,例如:化学反应和扩散发生的时间。收藏指正
7.Because the wakefield can be driven at amplitudes higher than 100GV/m with an oscillating terahertz (THz) frequency, one can generate ultra-powerful THz emission with field amplitudes greater than GV/m. This may find applications in high-field condensed matter physics and other areas.
由于用超短强激光脉冲尾波场可以达到的电场振幅达100GV/m,其振动频率在太赫兹(1012Hz)附近,用这种方法可以产生电场强度达到GV/m的太赫兹辐射.收藏指正
8.Nobel prize of Chemistry has been awarded to Professor Harold Kroto, University of Sussex, UK, Professor Bob Curl and Professor Rick Smalley,Rice University, Texas, for their exciting discovery of Fullerene in 1985. Here the discovery story, impact to Condensed Matter Physics and Chemistry brought by this discovery and the new research fields derived from this discovery have been overview briefly.
1996年的诺贝尔化学奖由美国得克萨斯州休斯顿的赖斯大学的柯尔教授和斯莫利教授以及英国萨塞克斯大学的克罗托教授因1985年发现富勒烯而分享,文章简要介绍了这一成就的发现、影响和由此而产生的新的化学分支和凝聚态物理研究的新领域收藏指正
9.β C 3N 4 research is one of the hottest topics in condensed matter physics and materials sciences. By using bias hot filament chemical vapor deposition,for the first time,we have synthesized β C 3N 4 single crystasl 1 3μm in length and 300 500nm in cross section. Its lattice parameters are a =6 24? and c= 2 36? with N∶C=1 30 1 40.
β?C3N4的研究是近年来凝聚态物理和材料科学研究的热门课题之一.我们利用偏压辅助热解化学气相沉积方法,首次获得长1—3μm,横截面尺寸在300—500nm的β?C3N4六棱体.其晶格常数a=6?24?和c=2?36?.N∶C=1?30—1?40.收藏指正
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