Repository logo
Log In
  1. Home
  2. Unibas
  3. Publications
  4. Direct measurement of the spin-orbit interaction in a two-electron InAs nanowire quantum dot
 
  • Details

Direct measurement of the spin-orbit interaction in a two-electron InAs nanowire quantum dot

Date Issued
2007-01-01
Author(s)
Fasth, C.
Fuhrer, A.
Samuelson, L.
Golovach, Vitaly N.
Loss, Daniel  
DOI
10.1103/physrevlett.98.266801
Abstract
We demonstrate control of the electron number down to the last electron in tunable few-electron quantum dots defined in catalytically grown InAs nanowires. Using low temperature transport spectroscopy in the Coulomb blockade regime, we propose a method to directly determine the magnitude of the spin-orbit interaction in a two-electron artificial atom with strong spin-orbit coupling. Because of a large effective g factor vertical bar g(*)vertical bar=8 +/- 1, the transition from a singlet S to a triplet T+ ground state with increasing magnetic field is dominated by the Zeeman energy rather than by orbital effects. We find that the spin-orbit coupling mixes the T+ and S states and thus induces an avoided crossing with magnitude Delta(SO)=0.25 +/- 0.05 meV. This allows us to calculate the spin-orbit length lambda(SO)approximate to 127 nm in such systems using a simple model.
University of Basel

edoc
Open Access Repository University of Basel

  • About edoc
  • About Open Access at the University of Basel
  • edoc Policy

Built with DSpace-CRIS software - Extension maintained and optimized by 4Science

  • Privacy policy
  • End User Agreement