A modified input-output approach with an added low-Q cavity channel models giant-atom electromagnetic scattering beyond the dipole approximation, explaining generic Fano-type spectra and extracting dissipation and coupling parameters.
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Vanadium resonators show surface-dominated non-TLS losses mitigated by Ta capping, with Nb-buffered films unexpectedly exhibiting higher losses despite better crystallinity.
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An input-output approach for giant atom scatterings beyond the dipole approximation
A modified input-output approach with an added low-Q cavity channel models giant-atom electromagnetic scattering beyond the dipole approximation, explaining generic Fano-type spectra and extracting dissipation and coupling parameters.
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Vanadium superconducting microwave resonators on silicon wafers
Vanadium resonators show surface-dominated non-TLS losses mitigated by Ta capping, with Nb-buffered films unexpectedly exhibiting higher losses despite better crystallinity.