Multimode RF reflectometry for spin qubit readout and device characterization
Abstract
We introduce a multimode superconducting inductor architecture that enables radio frequency reflectometry at multiple discrete frequencies up to 2 GHz, addressing limitations of conventional single-mode designs. The spiral inductor's distributed capacitance yields distinct resonant modes with varied impedance-matching conditions. By probing a quantum dot across several modes, we extract tunneling rates over a broad frequency range and identify signatures of nearby charge defects. Using a higher-order mode of the distributed inductor, rather than the fundamental mode, we demonstrate single-shot spin readout via a radio frequency single-electron transistor (RF-SET), achieving singlet-triplet readout with an integration time of 8 μs and a readout fidelity of 98%. These results establish multimode inductance as a scalable and flexible component for fast spin qubit readout and device-quality characterization.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (13)
Joffrey Rivard
Department of Physics, Université de Sherbrooke 1 , Sherbrooke, Québec J1K 2R1,
Alexis Morel
Department of Physics, Université de Sherbrooke 1 , Sherbrooke, Québec J1K 2R1,
Olivier Romain
El Bachir Ndiaye
Department of Physics, Université de Sherbrooke 1 , Sherbrooke, Québec J1K 2R1,
Idris Aboubakari
Department of Physics, Université de Sherbrooke 1 , Sherbrooke, Québec J1K 2R1,
Christian Lupien
Department of Physics, Université de Sherbrooke 1 , Sherbrooke, Québec J1K 2R1,
Clement Godfrin
Julien Jussot
Stefan Kubicek
Danny Wan
Kristiaan De Greve
Claude Rohrbacher
Department of Physics, Université de Sherbrooke 1 , Sherbrooke, Québec J1K 2R1,
Eva Dupont-Ferrier
Department of Physics, Université de Sherbrooke 1 , Sherbrooke, Québec J1K 2R1,