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Anisotropic g-Factor and Spin-Orbit Field in a Germanium Hut Wire Double Quantum Dot

  • Ting Zhang
  • , He Liu
  • , Fei Gao
  • , Gang Xu
  • , Ke Wang
  • , Xin Zhang
  • , Gang Cao
  • , Ting Wang
  • , Jianjun Zhang
  • , Xuedong Hu
  • , Hai Ou Li
  • , Guo Ping Guo
  • University of Science and Technology of China
  • Chinese Academy of Sciences
  • Origin Quantum Computing Company Limited

Research output: Contribution to journalArticlepeer-review

31 Scopus citations

Abstract

Holes in nanowires have drawn significant attention in recent years because of the strong spin-orbit interaction, which plays an important role in constructing Majorana zero modes and manipulating spin-orbit qubits. Here, from the strongly anisotropic leakage current in the spin blockade regime for a double dot, we extract the full g-tensor and find that the spin-orbit field is in plane with an azimuthal angle of 59° to the axis of the nanowire. The direction of the spin-orbit field indicates a strong spin-orbit interaction along the nanowire, which may have originated from the interface inversion asymmetry in Ge hut wires. We also demonstrate two different spin relaxation mechanisms for the holes in the Ge hut wire double dot: spin-flip co-tunneling to the leads, and spin-orbit interaction within the double dot. These results help establish feasibility of a Ge-based quantum processor.

Original languageEnglish
Pages (from-to)3835-3842
Number of pages8
JournalNano Letters
Volume21
Issue number9
DOIs
StatePublished - May 12 2021

Keywords

  • g-tensor
  • Ge hut wires
  • hole double quantum dot
  • Pauli spin blockade
  • spin-orbit interaction

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