English

Longitudinal coupling between a Si/SiGe quantum dot and an off-chip TiN resonator

Quantum Physics 2023-12-21 v3 Mesoscale and Nanoscale Physics

Abstract

Superconducting cavities have emerged as a key tool for measuring the spin states of quantum dots. So far however, few experiments have explored longitudinal couplings between dots and cavities, and no solid-state qubit experiments have explicitly probed the "adiabatic" regime, where the Purcell decay is strongly suppressed. Here, we report measurements of a double-quantum-dot charge qubit coupled to a high-impedance resonator via a "flip-chip" design geometry. By applying an adiabatic ac drive to the qubit through two different channels, and studying the effects of qubit energy detuning, interdot tunneling, and driving strength, we are able to unequivocally confirm the presence of a longitudinal coupling between the qubit and cavity, while the qubit remains in its ground state. Since this coupling is proportional to the driving amplitude, and is therefore switchable, it has the potential to become a powerful new tool in qubit experiments.

Keywords

Cite

@article{arxiv.2212.02736,
  title  = {Longitudinal coupling between a Si/SiGe quantum dot and an off-chip TiN resonator},
  author = {J. Corrigan and Benjamin Harpt and Nathan Holman and Rusko Ruskov and Piotr Marciniec and D. Rosenberg and D. Yost and R. Das and William D. Oliver and R. McDermott and Charles Tahan and Mark Friesen and M. A. Eriksson},
  journal= {arXiv preprint arXiv:2212.02736},
  year   = {2023}
}

Comments

Main text and Supplementary Materials, 16 pages, 10 figures

R2 v1 2026-06-28T07:23:11.493Z