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Catastrophic magnetic flux avalanches in NbTiN superconducting resonators

Nulens, Lukas (author)
Katholieke Universiteit Leuven
Lejeune, Nicolas (author)
Universite de Liège,University of Liège
Caeyers, Joost (author)
Katholieke Universiteit Leuven
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Marinković, Stefan (author)
Universite de Liège,University of Liège
Cools, Ivo, 1996 (author)
Chalmers tekniska högskola,Chalmers University of Technology
Dausy, Heleen (author)
Katholieke Universiteit Leuven
Basov, Sergey (author)
Katholieke Universiteit Leuven
Raes, Bart (author)
Katholieke Universiteit Leuven
Van Bael, Margriet J. (author)
Katholieke Universiteit Leuven
Geresdi, Attila, 1984 (author)
Chalmers tekniska högskola,Chalmers University of Technology
Silhanek, A. V. (author)
Universite de Liège,University of Liège
de Vondel, J. (author)
Katholieke Universiteit Leuven
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 (creator_code:org_t)
2023
2023
English.
In: Communications Physics. - 2399-3650. ; 6:1
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Macroscopic superconducting components are an important building block of various quantum circuits. Since several of the envisioned applications require exposure to magnetic fields, it is of utmost importance to explore the impact of magnetic fields on their performance. Here we explore the complex pattern of magnetic field penetration and identify its impact on the resonance frequency of NbTiN superconducting resonators by combining magneto-optical imaging and high-frequency measurements. At temperatures below approximately half of the superconducting critical temperature, the development of magnetic flux avalanches manifests itself as a noisy response in the field-dependent resonance frequency. Magneto-optical imaging reveals different regimes and distinguishes the impact of avalanches in the ground plane and resonator. Our findings demonstrate that superconducting resonators represent a valuable tool to investigate magnetic flux dynamics. Moreover, the current blooming of niobium-based superconducting radio-frequency devices makes this report timely by unveiling the severe implications of magnetic flux dynamics.

Subject headings

TEKNIK OCH TEKNOLOGIER  -- Elektroteknik och elektronik -- Annan elektroteknik och elektronik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Electrical Engineering, Electronic Engineering, Information Engineering -- Other Electrical Engineering, Electronic Engineering, Information Engineering (hsv//eng)
NATURVETENSKAP  -- Fysik -- Den kondenserade materiens fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Condensed Matter Physics (hsv//eng)

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