Controlled mitigation of quasiparticle tunneling in a 3D transmon
ORAL
Abstract
Non-equilibrium quasiparticle tunneling determines an upper bound for the coherence time of superconductor-based qubits. An important source of quasiparticles and quasiparticle tunneling is photons with energy above twice the superconducting gap. By using a charge-parity-sensitive 3D transmon qubit, we directly measure the quasiparticle tunneling rate, and we evaluate non-ambiguously the effectiveness of microwave line filters and radiation shields for reducing the incident flux of high-frequency photons on the transmon. We find that its quasiparticle tunneling rate can be reduced below 1/(100 ms) with a combination of filtering and shielding measures.
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Presenters
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Thomas Connolly
Yale University
Authors
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Thomas Connolly
Yale University
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Pavel Kurilovich
Yale University
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Valla Fatemi
Yale University
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Spencer Diamond
Yale University
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Max Hays
Yale University, Department of Electrical Engineering & Computer Science and Department of Physics, Massachusetts Institute of Technology
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Michel H Devoret
Yale University