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Disentangling the effects of spin-orbit and hyperfine interactions on spin blockade

  • S. Nadj-Perge
  • , S.M. Frolov
  • , J.W.W. Tilburg, Van
  • , J. Danon
  • , Y.V. Nazarov
  • , R.E. Algra
  • , E.P.A.M. Bakkers
  • , L.P. Kouwenhoven

Research output: Contribution to journalArticleAcademicpeer-review

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Abstract

We have achieved the few-electron regime in InAs nanowire double quantum dots. Spin blockade is observed for the first two half-filled orbitals, where the transport cycle is interrupted by forbidden transitions between triplet and singlet states. Partial lifting of spin blockade is explained by spin-orbit and hyperfine mechanisms that enable triplet to singlet transitions. The measurements over a wide range of interdot coupling and tunneling rates to the leads are well reproduced by a simple transport model. This allows us to separate and quantify the contributions of the spin-orbit and hyperfine interactions.
Original languageEnglish
Article number201305
Pages (from-to)201305-1/4
Number of pages4
JournalPhysical Review B
Volume81
Issue number20
DOIs
Publication statusPublished - 2010

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