NbTiN spiral inductors show predominantly inductive resonance shifts under elevated temperature and near-tesla fields, with design metrics linking track width and kinetic-inductance fraction to stability and field robustness.
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Superconducting Spiral Inductors for RF Reflectometry: Operation at Elevated Temperatures and Magnetic Fields
NbTiN spiral inductors show predominantly inductive resonance shifts under elevated temperature and near-tesla fields, with design metrics linking track width and kinetic-inductance fraction to stability and field robustness.