Kernel-Induced Systematics in Josephson Switching Measurements: A Unified Calibration and Implementation Framework (v1.9)

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Autores principales: Kato, Shunsuke, Ria, (D-Life Collaborator)
Formato: Recurso digital
Publicado: Zenodo 2025
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author Kato, Shunsuke
Ria, (D-Life Collaborator)
author_facet Kato, Shunsuke
Ria, (D-Life Collaborator)
contents <p>This work presents a unified analytical and experimental framework for quantifying and correcting kernel-induced systematic bias in Josephson switching-current measurements. It provides closed-form bias coefficients (αK = 1/6, 1/4, 1/3), interleaved measurement protocols, and quantitative uncertainty budgets directly applicable to superconducting circuit calibration. This paper complements the Information-Constrained FS/PS Framework (v9.2) by offering an operational implementation consistent with finite-bandwidth measurement effects observed in macroscopic quantum tunneling experiments.</p>
format Recurso digital
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publishDate 2025
publisher Zenodo
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spellingShingle Kernel-Induced Systematics in Josephson Switching Measurements: A Unified Calibration and Implementation Framework (v1.9)
Kato, Shunsuke
Ria, (D-Life Collaborator)
Josephson junction
systematic bias
measurement calibration
kernel response
FS/PS framework
superconducting circuits
uncertainty budget
<p>This work presents a unified analytical and experimental framework for quantifying and correcting kernel-induced systematic bias in Josephson switching-current measurements. It provides closed-form bias coefficients (αK = 1/6, 1/4, 1/3), interleaved measurement protocols, and quantitative uncertainty budgets directly applicable to superconducting circuit calibration. This paper complements the Information-Constrained FS/PS Framework (v9.2) by offering an operational implementation consistent with finite-bandwidth measurement effects observed in macroscopic quantum tunneling experiments.</p>
title Kernel-Induced Systematics in Josephson Switching Measurements: A Unified Calibration and Implementation Framework (v1.9)
topic Josephson junction
systematic bias
measurement calibration
kernel response
FS/PS framework
superconducting circuits
uncertainty budget
url https://doi.org/10.5281/zenodo.17295391