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Abstract
One of the main limitations in state-of-the art solid-state quantum processors is qubit decoherence and relaxation due to noise from adsorbates on surfaces, impurities at interfaces, and material defects. For the field to advance towards full fault-tolerant quantum computing, a better understanding of these microscopic noise sources is therefore needed. Here, we use an ultra-high vacuum package to study the impact of vacuum loading, UV-light exposure, and ion irradiation treatments on relaxation and coherence times, as well as slow parameter fluctuations of flux tunable superconducting transmon qubits. The treatments studied do not significantly impact the relaxation rate Γ1 and the echo decay rate
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1 IBM Quantum, IBM Research Europe - Zurich, Rüschlikon, Switzerland
2 IBM Quantum, IBM T.J. Watson Research Center, Yorktown Heights, USA (GRID:grid.481554.9) (ISNI:0000 0001 2111 841X)
3 IBM Quantum, IBM Research Europe - Zurich, Rüschlikon, Switzerland (GRID:grid.481554.9)