Characterizations of Superconducting Ta Films for Quantum Computing
ORAL
Abstract
Recently, a breakthrough was reported in the long coherence time (> 0.5 ms) transmon qubit using tantalum films as the base superconductor in the devices. Here we report a study of superconducting properties in Ta films showing a similar normal state resistive behavior and superconducting transition temperature TC. Using noncontact ac magnetic susceptibility measurements, we found strikingly different response in their imaginary part of magnetic susceptibility χ''. A sharp peak and near zero loss in χ′′ below TC were observed in some films, indicating a strongly coupled superconductor. A broad peak and massive loss in χ′′ below TC were observed in another films, that could be a leading source of decoherence. This study demonstrates that the ac susceptibility is an excellent method for characterizing bulk superconducting properties of the constituent materials used in qubits.
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Presenters
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Juntao Yao
Stony Brook University
Authors
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Juntao Yao
Stony Brook University
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Pedro Mercado
Brookhaven National Laboratory, Stony Brook University
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Qiang Li
Stony Brook University (SUNY)