Abstract
We report on the use of a kinetic-inductance traveling-wave parametric amplifier (KITWPA) as the first amplifier in the readout chain of a microwave superconducting quantum interference device (SQUID) multiplexer (μmux). This μmux is designed to multiplex signals from arrays of low temperature detectors, such as superconducting transition-edge sensor microcalorimeters. When modulated with a periodic flux-ramp to linearize the SQUID response, the flux noise improves, on average, from 1.6 μ Φ 0 / Hz with the KITWPA off to 0.77 μ Φ 0 / Hz with the KITWPA on. When statically biasing the μmux to the maximally flux-sensitive point, the flux noise drops from 0.45 μ Φ 0 / Hz to 0.2 μ Φ 0 / Hz . We validate this new readout scheme by coupling a transition-edge sensor microcalorimeter to the μmux and detecting background radiation. The combination of μmux and KITWPA provides a variety of new capabilities including improved detector sensitivity and more efficient bandwidth utilization.
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CITATION STYLE
Malnou, M., Mates, J. A. B., Vissers, M. R., Vale, L. R., Schmidt, D. R., Bennett, D. A., … Ullom, J. N. (2023). Improved microwave SQUID multiplexer readout using a kinetic-inductance traveling-wave parametric amplifier. Applied Physics Letters, 122(21). https://doi.org/10.1063/5.0149646
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