from    
to    
search  

 


Symmetry restoration and quantum Mpemba effects in chaotic andlocalization sy...
Quantum Gases 2024
Stories of Fermions in an Optical Box
Contractive Unitary and Classical Shadow Tomography
报告题目:
Exploring the Atomic and Molecular Foundations of Nanospintronics
 报告人:
Prof. Cyrus F Hirjibehedin
London Centre for Nanotechnology, Department of Physics & Astronomy,
University College London
报告时间:
2013-10-29 14:30
报告地点:
物理系三楼报告厅
主办单位:
物理系
  简介:

The drive to continue Moore’s Law by shrinking electrical components down to the ultimate limit has led to a great deal of interest in atomic and molecular-scale electronics, in which individual atoms and molecules can be used as circuit elements. More recent proposals also seek to exploit the magnetic properties of these nanoscale objects in new applications in information technology and spintronics. In typical device geometries, the magnetic element is coupled to electrical leads, and these interactions can strongly affect the properties of the quantum system.

 
Using scanning tunneling microscopy and spectroscopy, we study the effects of interactions between individual magnetic atoms and molecules that are separated from an underlying metallic surface by a thin-insulating layer of copper nitride (Cu2N).  For Co atoms on large Cu2N islands, we find that exchange coupling of the spin to the metallic bath can result in Kondo screening as well as dramatically shifting the energy levels of the spin and modifying its effective magnetic anisotropy, the property that determines the stability of its spin orientation. By controlling the exchange coupling, we can tune both the Kondo screening of the systems as well as the anisotropy energy over a broad range of values. Furthermore, this system constitutes one of the few cases in which an open quantum system’s energy levels, rather than just its excited-state lifetimes, can be controllably and observably renormalized. We also study the electronic transport through individual metal-doped phthalocyanine molecules on Cu2N and explore how it can be influenced through the magnetic properties of the molecules. These results have profound implications for controlling the properties of nanoscale spintronic devices.
 
CV: Dr Hirjibehedin received a B.S. in both Physics and Computer Science from Stanford University in 1997, after which he earned a Ph.D. in Physics from Columbia University in 2004. Then he became a postdoctoral Research Staff Member at IBMs Almaden Research Center in the Low-Temperature STM Group. He is currently a Reader in the Departments of Physics & Astronomy and Chemistry at University College London and is a Principal Investigator at the London Centre for Nanotechnology.
今日相关信息
“清风雅集”学术评论之四:中国经济是否能...
材料院《材料科学论坛》:Electrospun N...
Challenges in Personal Super-computer...
Lanthanide organometallics as single-...
Improvements of EBSD raw data represe...
 
同类别相关信息
Symmetry restoration and quantum Mp...
Quantum Gases 2024
Stories of Fermions in an Optical Box
Contractive Unitary and Classical S...
Dirac spin liquids as quantum criti...
学术活动