Measurement-induced state transitions in dispersive qubit readout schemes

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Auteurs principaux: Nesterov, Konstantin N., Pechenezhskiy, Ivan V.
Format: Preprint
Publié: 2024
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author Nesterov, Konstantin N.
Pechenezhskiy, Ivan V.
author_facet Nesterov, Konstantin N.
Pechenezhskiy, Ivan V.
contents The dispersive-readout scheme enables quantum nondemolition measurement of superconducting qubits. An increased readout power can shorten the readout time and reduce the state discrimination error but can promote qubit transitions into higher noncomputational states. The ability to predict the onset of these measurement-induced state transitions can aid the optimization of qubit circuits and provide means for comparing the readout performance of different qubit types. Building upon the concept of dressed coherent states, we consider two straightforward metrics for determining the maximum number of photons that can be used for dispersive readout without causing state transitions. We focus on the fluxonium readout to demonstrate the independence of the metrics from any qubit-type-specific approximations. The dispersive readout of transmons and other superconducting qubits can be treated universally in the same fashion.
format Preprint
id arxiv_https___arxiv_org_abs_2402_07360
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Measurement-induced state transitions in dispersive qubit readout schemes
Nesterov, Konstantin N.
Pechenezhskiy, Ivan V.
Quantum Physics
The dispersive-readout scheme enables quantum nondemolition measurement of superconducting qubits. An increased readout power can shorten the readout time and reduce the state discrimination error but can promote qubit transitions into higher noncomputational states. The ability to predict the onset of these measurement-induced state transitions can aid the optimization of qubit circuits and provide means for comparing the readout performance of different qubit types. Building upon the concept of dressed coherent states, we consider two straightforward metrics for determining the maximum number of photons that can be used for dispersive readout without causing state transitions. We focus on the fluxonium readout to demonstrate the independence of the metrics from any qubit-type-specific approximations. The dispersive readout of transmons and other superconducting qubits can be treated universally in the same fashion.
title Measurement-induced state transitions in dispersive qubit readout schemes
topic Quantum Physics
url https://arxiv.org/abs/2402.07360