Loss and decoherence due to stray infrared light in superconducting quantum circuits

Abstract

We find that stray infrared light from the 4 K stage in a cryostat can cause significant loss in superconducting resonators and qubits. For devices shielded in only a metal box, we measured resonators with quality factors Q = 105 and qubits with energy relaxation times T1=120 ns, consistent with a stray light-induced quasiparticle density of 170-230 μ m-3. By adding a second black shield at the sample temperature, we found about an order of magnitude improvement in performance and no sensitivity to the 4 K radiation. We also tested various shielding methods, implying a lower limit of Q = 108 due to stray light in the light-tight configuration.

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