Direct Dispersive Monitoring of Charge Parity in Offset-Charge-Sensitive Transmons

K. Serniak, S. Diamond, M. Hays, V. Fatemi, S. Shankar, L. Frunzio, R.J. Schoelkopf, M.H. Devoret · Physical Review Applied · 2019

Improving the coherence of superconducting qubits is a crucial step toward the goal of fault-tolerant quantum processors based on them. An ongoing experimental challenge is to diagnose and mitigate the dominant decoherence mechanisms. In this work, the authors demonstrate a method of probing the decoherence induced by nonequilibrium superconducting quasiparticles, and show that improved filtering of quasiparticle-generating radiation can improve the energy-relaxation time ${T}_{1}$ of superconducting qubits, reaching an average of 200 $\ensuremath{\mu}$s in the measured device. Furthermore, the measurement technique is relevant for ultralow-noise sensing in general.

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