from    
to    
search  

 


Classification and construction of crystalline topologicalsuperconductors an...
韩国影视节目“走出去”的历程: 从平台与内容的角度看国际传播
未来音乐将会怎样?
清华大学材料科学与工程研究院《材料科学论坛》:Adaptive Nanophotonics by Novel...
报告题目:
物理系colloquium:Magic flat bands of electrons in moiré graphene
 报告人:
Lian Biao (廉骉)
Princeton University
报告时间:
2023-06-15 16:00
报告地点:
理科楼郑裕彤讲堂
主办单位:
物理系
  简介:

The stacking of two similar lattices produces a moiré pattern which is a large spatial period superlattice. Experimentally, a large class of 2D moiré materials can be created using this method, which has attracted extensive interests recently. A paradigm is the twisted bilayer graphene (TBG), which generates topological flat bands of electrons at the so-called magic angle (1.1 degrees), and exhibits superconductivity and correlated insulator phases. I will talk about the systematic theory of TBG with Coulomb interactions, which has an approximate U(4) symmetry and interacting Chern insulator ground states at integer fillings. I will further present alternative setups of moiré graphene hosting magic flat bands in effective kagome and honeycomb moiré lattices, particularly twisted Kekulé graphene. These systems provide promising new platforms for studying novel strongly correlated phases of matter.

  

Bio: Dr. Lian Biao is an assistant professor at the Department of Physics, Princeton University. He received his B.Sc. from the Department of Physics, Tsinghua University in 2012, and completed his Ph.D. study from Stanford University in 2017. He then worked as a postdoctoral fellow in Princeton Center for Theoretical Science from 2017 to 2020. His research interests are theoretical condensed matter physics and nonequilibrium many-body quantum systems. He received awards including Sloan Research Fellowship (2021) and NSF early career award (2022). 

今日相关信息
Liquid-liquid phase separation mediat...
车辆与运载学院286期学术沙龙-比亚迪电动...
 
同类别相关信息
Microwave-shielded polar molecules
Non-Hermitian topology and braiding...
物理系colloquium: 超快激光精密制造
Remarks on fluctuations in large N ...
浅谈胶体量子点红外材料与探测技术
学术活动