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Exploring the Single Atom Spin State by Electron Spectroscopy
Journal article   Peer reviewed

Exploring the Single Atom Spin State by Electron Spectroscopy

Yung-Chang Lin, Po-Yuan Teng, Po-Wen Chiu and Kazu Suenaga
Physical Review Letters, Vol.115(20), 206803
12/11/2015

Abstract

To control the spin state of an individual atom is an ultimate goal for spintronics. A single atom magnet, which may lead to a supercapacity memory device if realized, requires the high-spin state of an isolated individual atom. Here, we demonstrate the realization of well isolated transition metal (TM) atoms fixed at atomic defects sparsely dispersed in graphene. Core-level electron spectroscopy clearly reveals the high-spin state of the individual TM atoms at the divacancy or edge of the graphene layer. We also show for the first time that the spin state of single TM atoms systematically varies with the coordination of neighboring nitrogen or oxygen atoms. These structures can be thus regarded as the smallest components of spintronic devices with controlled magnetic behavior. © 2015 American Physical Society.

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