English

Magnetic Gradient Fluctuations from Quadrupolar $^{73}$Ge in Si/SiGe Exchange-Only Qubits

Quantum Physics 2021-03-31 v1 Mesoscale and Nanoscale Physics

Abstract

We study the time-fluctuating magnetic gradient noise mechanisms in pairs of Si/SiGe quantum dots using exchange echo noise spectroscopy. We find through a combination of spectral inversion and correspondence to theoretical modeling that quadrupolar precession of the 73^{73}Ge nuclei play a key role in the spin-echo decay time T2T_2, with a characteristic dependence on magnetic field and the width of the Si quantum well. The 73^{73}Ge noise peaks appear at the fundamental and first harmonic of the 73^{73}Ge Larmor resonance, superimposed over 1/f1/f noise due to 29^{29}Si dipole-dipole dynamics, and are dependent on material epitaxy and applied magnetic field. These results may inform the needs of dynamical decoupling when using Si/SiGe quantum dots as qubits in quantum information processing devices.

Keywords

Cite

@article{arxiv.2009.08079,
  title  = {Magnetic Gradient Fluctuations from Quadrupolar $^{73}$Ge in Si/SiGe Exchange-Only Qubits},
  author = {J. Kerckhoff and B. Sun and B. H. Fong and C. Jones and A. A. Kiselev and D. W. Barnes and R. S. Noah and E. Acuna and M. Akmal and S. D. Ha and J. A. Wright and B. J. Thomas and C. A. C. Jackson and L. F. Edge and K. Eng and R. S. Ross and T. D. Ladd},
  journal= {arXiv preprint arXiv:2009.08079},
  year   = {2021}
}

Comments

17 pages, 11 figures

R2 v1 2026-06-23T18:36:16.629Z