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Phase-Driving Hole Spin Qubits

  • Stefano Bosco
  • , Simon Geyer
  • , Leon C. Camenzind
  • , Rafael S. Eggli
  • , Andreas Fuhrer
  • , Richard J. Warburton
  • , Dominik M. Zumbühl
  • , J. Carlos Egues
  • , Andreas V. Kuhlmann
  • , Daniel Loss

Research output: Contribution to journalArticlepeer-review

15 Scopus citations

Abstract

The spin-orbit interaction in spin qubits enables spin-flip transitions, resulting in Rabi oscillations when an external microwave field is resonant with the qubit frequency. Here, we introduce an alternative driving mechanism mediated by the strong spin-orbit interactions in hole spin qubits, where a far-detuned oscillating field couples to the qubit phase. Phase-driving at radio frequencies, orders of magnitude slower than the microwave qubit frequency, induces highly nontrivial spin dynamics, violating the Rabi resonance condition. By using a qubit integrated in a silicon fin field-effect transistor, we demonstrate a controllable suppression of resonant Rabi oscillations and their revivals at tunable sidebands. These sidebands enable alternative qubit control schemes using global fields and local far-detuned pulses, facilitating the design of dense large-scale qubit architectures with local qubit addressability. Phase-driving also decouples Rabi oscillations from noise, an effect due to a gapped Floquet spectrum and can enable Floquet engineering high-fidelity gates in future quantum processors.

Original languageEnglish
Article number197001
JournalPhysical Review Letters
Volume131
Issue number19
DOIs
StatePublished - 10 Nov 2023
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2023 American Physical Society.

ASJC Scopus subject areas

  • General Physics and Astronomy

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