The spatial correlation of radiation-induced errors in superconducting devices decays over a millimeter

Fuente: arXiv
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Autori principali: Valenti, Francesco, Murani, Anil, Paluch, Patrick, Gartmann, Robert, Scheller, Lukas, Gebauer, Richard, Kruk, Robert, Reisinger, Thomas, Ardila-Perez, Luis, Pop, Ioan M.
Natura: Preprint
Pubblicazione: 2025
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author Valenti, Francesco
Murani, Anil
Paluch, Patrick
Gartmann, Robert
Scheller, Lukas
Gebauer, Richard
Kruk, Robert
Reisinger, Thomas
Ardila-Perez, Luis
Pop, Ioan M.
author_facet Valenti, Francesco
Murani, Anil
Paluch, Patrick
Gartmann, Robert
Scheller, Lukas
Gebauer, Richard
Kruk, Robert
Reisinger, Thomas
Ardila-Perez, Luis
Pop, Ioan M.
contents We perform nanosecond-resolution multiplexed readout on six same-chip superconducting microwave resonators. This allows us to pinpoint the impact positions of ionizing radiation on the chip by measuring the differential time of flight of the generated phonons, inducing correlated errors in the device, thereby implementing an on-chip seismic array. We correlate the phase response of each resonator - a proxy for the absorbed energy - to the distance from the impact point to uncover a millimetric decay length for the phonon-mediated radiation poisoning.
format Preprint
id arxiv_https___arxiv_org_abs_2505_04902
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The spatial correlation of radiation-induced errors in superconducting devices decays over a millimeter
Valenti, Francesco
Murani, Anil
Paluch, Patrick
Gartmann, Robert
Scheller, Lukas
Gebauer, Richard
Kruk, Robert
Reisinger, Thomas
Ardila-Perez, Luis
Pop, Ioan M.
Superconductivity
Quantum Physics
We perform nanosecond-resolution multiplexed readout on six same-chip superconducting microwave resonators. This allows us to pinpoint the impact positions of ionizing radiation on the chip by measuring the differential time of flight of the generated phonons, inducing correlated errors in the device, thereby implementing an on-chip seismic array. We correlate the phase response of each resonator - a proxy for the absorbed energy - to the distance from the impact point to uncover a millimetric decay length for the phonon-mediated radiation poisoning.
title The spatial correlation of radiation-induced errors in superconducting devices decays over a millimeter
topic Superconductivity
Quantum Physics
url https://arxiv.org/abs/2505.04902