2023arXiv (Cornell University)Open access

Quasiparticle spectroscopy in technologically-relevant niobium using London penetration depth measurements

Sunil Ghimire, Kamal Joshi, Amlan Datta, Aidan Goerdt, M. A. Tanatar, D. L. Schlagel, M. J. Kramer, Jayss Marshall, Cameron J. Copas, J. Mutus, Alexander Romanenko, Anna Grassellino, R. Prozorov

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Abstract

London penetration depth was measured in niobium foils, thin films, single crystals, and superconducting radio-frequency (SRF) cavity pieces cut out from different places. The low-temperature (T

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London penetration depth was measured in niobium foils, thin films, single crystals, and superconducting radio-frequency (SRF) cavity pieces cut out from different places. The low-temperature (T

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Available abstract

London penetration depth was measured in niobium foils, thin films, single crystals, and superconducting radio-frequency (SRF) cavity pieces cut out from different places. The low-temperature (T

Key concepts: Niobium, Quasiparticle, Penetration depth, Superconductivity, Superconducting radio frequency, London penetration depth, Condensed matter physics, Spectroscopy

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