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New opportunities for sensing via continuous measurement
Topological and out-of-equilibrium QFTs, and quantum computing
【低维量子物理国家重点实验室杰出学者讲座】Superconductivity and magnetism: tw...
【低维量子物理国家重点实验室杰出学者讲座】Topological and correlated phases i...
报告题目:
STM Investigation of Coulomb Impurities on Graphene
 报告人:
汪洋
UC Berkeley
报告时间:
2012-12-17 15:30
报告地点:
清华-富士康纳米纳米科技研究中心四楼会议室
主办单位:
物理系
  简介:
The response of Dirac fermions to a Coulomb potential is predicted to differ significantly from how non-relativistic electrons behave in traditional atomic and impurity systems. Surprisingly, many key theoretical predictions for this ultra-relativistic regime have not been tested. Graphene, a 2D material in which electrons behave like massless Dirac fermions, provides a unique opportunity to test such predictions. Here I will talk about our scanning tunneling microscopy (STM) study of Coulomb impurities on graphene. The charged impurities on graphene display two types of behaviors: subcritical regime where Dirac fermions scatter off the charged impurities while remain their delocalized natures, and supercritical regime where a novel electronic state known as the “atomic collapse” state is formed.
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