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Volume dependence of microwave induced excess quasiparticles in superconducting resonators

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arxiv 2503.07443 v2 pith:4QWUUQ4G submitted 2025-03-10 cond-mat.supr-con cond-mat.dis-nncond-mat.mes-hall

classification cond-mat.supr-concond-mat.dis-nncond-mat.mes-hall
keywords microwavequasiparticlequasiparticlesreadoutsuperconductingdensityeffectexcess
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The presence of quasiparticles typically degrades the performance of superconducting microwave circuits. The readout signal can generate non-equilibrium quasiparticles, which lead to excess microwave loss and decoherence. To understand this effect quantitatively, we measure quasiparticle fluctuations and extract the quasiparticle density across different temperatures, readout powers, and resonator volumes. We find that microwave power generates a higher quasiparticle density as the active resonator volume is reduced and show that this effect sets a sensitivity limit on kinetic inductance detectors. We compare our results with theoretical models of direct microwave photon absorption by quasiparticles and conclude that an unknown, indirect mechanism plays a dominant role in quasiparticle generation. These results provide a route to mitigate quasiparticle generation due to readout power in superconducting devices.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Lens based Kinetic Inductance Detectors with Distributed Dual Polarised Absorbers for Far Infra-red Space-based Astronomy

    astro-ph.IM 2025-06 conditional novelty 6.0 of 10

    A lens-coupled kinetic inductance detector array with dual-polarized meandering aluminum absorbers is designed, fabricated, and tested at 6.98 THz, achieving a noise equivalent power of 8e-20 W/sqrt(Hz) and an apertur...

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