Near-Unity Charge Readout in a Nonlinear Resonator without Matching

Fuente: arXiv
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Hauptverfasser: Havir, Harald, Cicovic, Andrea, Glidic, Pierre, Haldar, Subhomoy, Lehmann, Sebastian, Dick, Kimberly A., Maisi, Ville F.
Format: Preprint
Veröffentlicht: 2025
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author Havir, Harald
Cicovic, Andrea
Glidic, Pierre
Haldar, Subhomoy
Lehmann, Sebastian
Dick, Kimberly A.
Maisi, Ville F.
author_facet Havir, Harald
Cicovic, Andrea
Glidic, Pierre
Haldar, Subhomoy
Lehmann, Sebastian
Dick, Kimberly A.
Maisi, Ville F.
contents In this paper, we present a nonlinear resonator performing the readout of a charge-sensing quantum dot. We show that by driving the resonator in the nonlinear regime, we achieve a near-unity signal. This despite not satisfying the impedance matching requirements necessary for such large signals in the linear regime. Our experiments, supported by numerical calculations, demonstrate that the signal increase stems from the sensor dissipation shifting the onset of the nonlinear resonator response. By lifting the matching requirement, we increase the bandwidth limit of resonator readout-based charge detection by an order of magnitude, opening up the avenue to ultra-fast charge detectors.
format Preprint
id arxiv_https___arxiv_org_abs_2505_17709
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Near-Unity Charge Readout in a Nonlinear Resonator without Matching
Havir, Harald
Cicovic, Andrea
Glidic, Pierre
Haldar, Subhomoy
Lehmann, Sebastian
Dick, Kimberly A.
Maisi, Ville F.
Mesoscale and Nanoscale Physics
Superconductivity
Instrumentation and Detectors
In this paper, we present a nonlinear resonator performing the readout of a charge-sensing quantum dot. We show that by driving the resonator in the nonlinear regime, we achieve a near-unity signal. This despite not satisfying the impedance matching requirements necessary for such large signals in the linear regime. Our experiments, supported by numerical calculations, demonstrate that the signal increase stems from the sensor dissipation shifting the onset of the nonlinear resonator response. By lifting the matching requirement, we increase the bandwidth limit of resonator readout-based charge detection by an order of magnitude, opening up the avenue to ultra-fast charge detectors.
title Near-Unity Charge Readout in a Nonlinear Resonator without Matching
topic Mesoscale and Nanoscale Physics
Superconductivity
Instrumentation and Detectors
url https://arxiv.org/abs/2505.17709