from    
to    
search  

 


基于选择性断裂惰性键的生物质资源化学
世纪物理情系列讲座(第26讲):Layertronics in twisted 2D semiconductors
环境学术沙龙第696期:从编辑视角谈如何在《自然》系列期刊发文
环境学术沙龙第695期:Publishing with Impact in Royal Society of Chemistry Jour...
报告题目:
Physical effects of impurities on electronic structure of Fe-based superconductors
 报告人:
Dr. Wei Ku
Brookhaven National Laboratory
报告时间:
2012-12-12 10:30
报告地点:
理科楼三楼报告厅
主办单位:
物理系
  简介:
Recent theoretical studies of physical effects of impurities on electronic structure of Fe-based superconductors will be presented.  With Co- and Zn- substitution of Fe, our result indicates injection of real carriers and thus invalidates recent claim of such substitution being isovalent.  On the other hand, a significant shift of chemical potential is found upon disordering the Fe vacancy of K0.8Fe1.6As2, generating an effective “doping” to the system without additional charge carriers.  The seemingly absent hole carriers are actually still present in the system, but become incoherent in nature, raising new questions concerning their role in superconductivity.  Finally, with isovalent substitution of Fe by Ru, an unexpected insensitivity of the low-energy carriers is found, offering a natural explanation why superconductivity and transport of this material are so resilience to large amount of disordered impurities. Similarity of the underlying mechanism to the exotic super-diffusion mechanism will be discussed.
 
References:
[1] Phys. Rev. Lett. 109, 147003 (2012)
[2] Phys. Rev. Lett. 108, 207003 (2012)
[3] arXiv:1209.3001; to appear in Phys. Rev. Lett.
[4] Phys. Rev. Lett. 106, 077005 (2011)
 
Biography:Dr. Wei Ku graduated from physics department, University of Tennessee in 2000.  He conducted his postdoctoral research in University of California at Davis 2000-2003, and became a physicist in Brookhaven National Laboratory in 2003.  He has published more than 65 papers, at least half of which are in prestigious journals like Physical Review Letter and Natural Physics.  His research area includes first-principles theoretical study of electronic structure of materials and their excitation, and related computational method development.  In recent years, he focused on strongly correlated materials and disorders in functional materials.
今日相关信息
云计算及软件工业的商业模型(高水平英文课...
Molecular Imaging Probes for Cancer R...
清华大学清洁能源讲坛系列学术报告(七):...
Correlation Decay up to Uniqueness in...
清华环境论坛第39讲:Co-benefit, co-con...
 
同类别相关信息
Co-evolution of the first supermass...
散射振幅基本原理和前沿讲座
Cosmological Inference using Gravit...
Study QCD Phase Diagram in High-Ene...
The rise of the first stars: exotic...
学术活动