Gradiometric, Fully Tunable C-Shunted Flux Qubits

Fuente: arXiv
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Autores principales: Berlitz, Benedikt, Händel, Alexander Konstantin, Daum, Etienne, Ustinov, Alexey V., Lisenfeld, Jürgen
Formato: Preprint
Publicado: 2025
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author Berlitz, Benedikt
Händel, Alexander Konstantin
Daum, Etienne
Ustinov, Alexey V.
Lisenfeld, Jürgen
author_facet Berlitz, Benedikt
Händel, Alexander Konstantin
Daum, Etienne
Ustinov, Alexey V.
Lisenfeld, Jürgen
contents Fully tunable flux qubits offer in-situ and independent controls of their energy potential asymmetry and tunnel barrier, making them versatile tools for quantum computation and the study of decoherence sources. However, only short coherence times have been demonstrated so far with this type of qubit. Here, we present a capacitively shunted flux qubit featuring improved relaxation times up to T1 = 25 $μ$s and a frequency tunability range of $\sim$ 20 GHz at the flux-insensitive sweet spot. As a model application, we demonstrate detection of two-level tunneling defects in a frequency range spanning one octave.
format Preprint
id arxiv_https___arxiv_org_abs_2509_26024
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Gradiometric, Fully Tunable C-Shunted Flux Qubits
Berlitz, Benedikt
Händel, Alexander Konstantin
Daum, Etienne
Ustinov, Alexey V.
Lisenfeld, Jürgen
Quantum Physics
Superconductivity
Fully tunable flux qubits offer in-situ and independent controls of their energy potential asymmetry and tunnel barrier, making them versatile tools for quantum computation and the study of decoherence sources. However, only short coherence times have been demonstrated so far with this type of qubit. Here, we present a capacitively shunted flux qubit featuring improved relaxation times up to T1 = 25 $μ$s and a frequency tunability range of $\sim$ 20 GHz at the flux-insensitive sweet spot. As a model application, we demonstrate detection of two-level tunneling defects in a frequency range spanning one octave.
title Gradiometric, Fully Tunable C-Shunted Flux Qubits
topic Quantum Physics
Superconductivity
url https://arxiv.org/abs/2509.26024