Parametric longitudinal coupling of a semiconductor charge qubit and a RF resonator

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Main Authors: Champain, Victor, Zihlmann, Simon, Chessari, Alessandro, Bertrand, Benoit, Niebojewski, Heimanu, Dumur, Etienne, Jehl, Xavier, Schmitt, Vivien, Brun, Boris, Winkelmann, Clemens, Niquet, Yann-Michel, Filippone, Michele, De Franceschi, Silvano, Maurand, Romain
Format: Preprint
Published: 2024
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author Champain, Victor
Zihlmann, Simon
Chessari, Alessandro
Bertrand, Benoit
Niebojewski, Heimanu
Dumur, Etienne
Jehl, Xavier
Schmitt, Vivien
Brun, Boris
Winkelmann, Clemens
Niquet, Yann-Michel
Filippone, Michele
De Franceschi, Silvano
Maurand, Romain
author_facet Champain, Victor
Zihlmann, Simon
Chessari, Alessandro
Bertrand, Benoit
Niebojewski, Heimanu
Dumur, Etienne
Jehl, Xavier
Schmitt, Vivien
Brun, Boris
Winkelmann, Clemens
Niquet, Yann-Michel
Filippone, Michele
De Franceschi, Silvano
Maurand, Romain
contents In this study, we provide a full experimental characterization of the parametric longitudinal coupling between a CMOS charge qubit and an off-chip RF resonator. Following Corrigan et al, Phys. Rev. Applied 20, 064005 (2023), we activate parametric longitudinal coupling by driving the charge qubit at the resonator frequency. Managing the crosstalk between the drive applied to the qubit and the resonator allows for the systematic study of the dependence of the longitudinal and dispersive charge-photon couplings on the qubit-resonator detuning and the applied drive. Our experimental estimations of the charge-photon couplings are perfectly reproduced by theoretical simple formulas, without relying on any fitting parameter. We go further by showing a parametric displacement of the resonator's steady state, conditional on the qubit state, and the insensitivity of the longitudinal coupling constant on the photon population of the resonator. Our results open to the exploration of the photon-mediated longitudinal readout and coupling of multiple and distant spins, with long coherent times, in hybrid CMOS cQED architectures.
format Preprint
id arxiv_https___arxiv_org_abs_2410_20217
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Parametric longitudinal coupling of a semiconductor charge qubit and a RF resonator
Champain, Victor
Zihlmann, Simon
Chessari, Alessandro
Bertrand, Benoit
Niebojewski, Heimanu
Dumur, Etienne
Jehl, Xavier
Schmitt, Vivien
Brun, Boris
Winkelmann, Clemens
Niquet, Yann-Michel
Filippone, Michele
De Franceschi, Silvano
Maurand, Romain
Mesoscale and Nanoscale Physics
Quantum Physics
In this study, we provide a full experimental characterization of the parametric longitudinal coupling between a CMOS charge qubit and an off-chip RF resonator. Following Corrigan et al, Phys. Rev. Applied 20, 064005 (2023), we activate parametric longitudinal coupling by driving the charge qubit at the resonator frequency. Managing the crosstalk between the drive applied to the qubit and the resonator allows for the systematic study of the dependence of the longitudinal and dispersive charge-photon couplings on the qubit-resonator detuning and the applied drive. Our experimental estimations of the charge-photon couplings are perfectly reproduced by theoretical simple formulas, without relying on any fitting parameter. We go further by showing a parametric displacement of the resonator's steady state, conditional on the qubit state, and the insensitivity of the longitudinal coupling constant on the photon population of the resonator. Our results open to the exploration of the photon-mediated longitudinal readout and coupling of multiple and distant spins, with long coherent times, in hybrid CMOS cQED architectures.
title Parametric longitudinal coupling of a semiconductor charge qubit and a RF resonator
topic Mesoscale and Nanoscale Physics
Quantum Physics
url https://arxiv.org/abs/2410.20217