We investigate the magnetic field and temperature dependence of the single-electron spin lifetime in silicon quantum dots and find a lifetime of 2.8 ms at a temperature of 1.1 K. We develop a model based on spin-valley mixing and find that Johnson noise and two-phonon processes limit relaxation at low and high temperature respectively. We also investigate the effect of temperature on charge noise and find a linear dependence up to 4 K. These results contribute to the understanding of relaxation in silicon quantum dots and are promising for qubit operation at elevated temperatures.
@article{arxiv.1803.01774,
title = {Spin lifetime and charge noise in hot silicon quantum dot qubits},
author = {L. Petit and J. M. Boter and H. G. J. Eenink and G. Droulers and M. L. V. Tagliaferri and R. Li and D. P. Franke and K. J. Singh and J. S. Clarke and R. N. Schouten and V. V. Dobrovitski and L. M. K. Vandersypen and M. Veldhorst},
journal= {arXiv preprint arXiv:1803.01774},
year = {2018}
}