Dynamics of Hole Singlet-Triplet Qubits with Large g -Factor Differences

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Abstract

The spin-orbit interaction permits to control the state of a spin qubit via electric fields. For holes it is particularly strong, allowing for fast all electrical qubit manipulation, and yet an in-depth understanding of this interaction in hole systems is missing. Here we investigate, experimentally and theoretically, the effect of the cubic Rashba spin-orbit interaction on the mixing of the spin states by studying singlet-triplet oscillations in a planar Ge hole double quantum dot. Landau-Zener sweeps at different magnetic field directions allow us to disentangle the effects of the spin-orbit induced spin-flip term from those caused by strongly site-dependent and anisotropic quantum dot g tensors. Our work, therefore, provides new insights into the hole spin-orbit interaction, necessary for optimizing future qubit experiments.

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Jirovec, D., Mutter, P. M., Hofmann, A., Crippa, A., Rychetsky, M., Craig, D. L., … Katsaros, G. (2022). Dynamics of Hole Singlet-Triplet Qubits with Large g -Factor Differences. Physical Review Letters, 128(12). https://doi.org/10.1103/PhysRevLett.128.126803

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