Affiliation:
1. ETH Zürich
2. Jülich Aachen Research Alliance (JARA)
3. Technology Innovation Institute
Abstract
A known source of decoherence in superconducting qubits is the presence of broken Cooper pairs, or quasiparticles. These can be generated by high-energy radiation, either present in the environment or purposefully introduced, as in the case of some hybrid quantum devices. Here, we systematically study the properties of a transmon qubit under illumination by focused infrared radiation with various powers, durations, and spatial locations. Despite the high energy of incident photons, our observations agree well with a model of low-energy quasiparticle dynamics dominated by trapping. This technique can be used for understanding and potentially mitigating the effects of high-energy radiation on superconducting circuits with a variety of geometries and materials.
Published by the American Physical Society
2024
Funder
Horizon 2020 Framework Programme
Army Research Office
Nederlandse Organisatie voor Wetenschappelijk Onderzoek
ETH Zurich Postdoctoral Fellowship
Publisher
American Physical Society (APS)
Cited by
1 articles.
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