Defect induced magnetism in semiconductor nanostructures

ORAL

Abstract

It has been proposed that magnetic semiconductors can be designed by using non-magnetic defects, e.g., through the introduction of an extrinsic impurity atom that does not exhibit magnetism by itself (Phys. Rev. Lett. 99, 127201). In order to address such proposals, we have employed a real-space pseudopotential method based on the generalized gradient approximation to determine the magnetic properties of boron and aluminum doped silicon nanocrystals and nanowires. We will discuss theoretical evidence for defect induced magnetism as a function of the nanostructure size. We suggest that defect induced magnetism can be strongly enhanced by quantum confinement.

*This work was supported in part by NSF under DMR-0551195 and the U.S. Department of Energy under DE-FG02-06ER46286 and DE- FG02-06ER15760.

Authors

  • Hyunwook Kwak

    • University of Minnesota
  • Tzu-Liang Chan

    • University of Texas at Austin
    • University of Texas
  • James Chelikowsky

    • The University of Texas at Austin
    • University of Texas at Austin
    • University of Texas, Austin
    • University of Texas, Austin, TX
    • UT Austin
    • University of Texas