Parametric Drive of a Double Quantum Dot in a Cavity

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Jarjat, L., Hue, B., Philippe-Kagan, T., Neukelmance, B., Craquelin, J., Théry, A., Fruy, C., Abulizi, G., Becdelievre, J., Desjardins, M. M., Kontos, T., Delbecq, M. R.
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866914085937872896
author Jarjat, L.
Hue, B.
Philippe-Kagan, T.
Neukelmance, B.
Craquelin, J.
Théry, A.
Fruy, C.
Abulizi, G.
Becdelievre, J.
Desjardins, M. M.
Kontos, T.
Delbecq, M. R.
author_facet Jarjat, L.
Hue, B.
Philippe-Kagan, T.
Neukelmance, B.
Craquelin, J.
Théry, A.
Fruy, C.
Abulizi, G.
Becdelievre, J.
Desjardins, M. M.
Kontos, T.
Delbecq, M. R.
contents We demonstrate the parametric modulation of a double quantum dot charge dipole coupled to a cavity, at the cavity frequency, achieving an amplified readout signal compared to conventional dispersive protocols. Our findings show that the observed cavity field displacement originates from dipole radiation within the cavity, rather than from a longitudinal coupling mechanism, yet exhibits the same signatures while relying on a transverse coupling. By carefully tuning the phase and amplitude of the intra-cavity field, we achieve a $π$-phase shift between two dipole states, resulting in a substantial enhancement of the signal-to-noise ratio. In addition to its applications in quantum dot based qubits in cQED architectures, this protocol could serve as a new promising tool for probing exotic electronic states in mesoscopic circuits embedded in cavities.
format Preprint
id arxiv_https___arxiv_org_abs_2510_09120
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Parametric Drive of a Double Quantum Dot in a Cavity
Jarjat, L.
Hue, B.
Philippe-Kagan, T.
Neukelmance, B.
Craquelin, J.
Théry, A.
Fruy, C.
Abulizi, G.
Becdelievre, J.
Desjardins, M. M.
Kontos, T.
Delbecq, M. R.
Mesoscale and Nanoscale Physics
We demonstrate the parametric modulation of a double quantum dot charge dipole coupled to a cavity, at the cavity frequency, achieving an amplified readout signal compared to conventional dispersive protocols. Our findings show that the observed cavity field displacement originates from dipole radiation within the cavity, rather than from a longitudinal coupling mechanism, yet exhibits the same signatures while relying on a transverse coupling. By carefully tuning the phase and amplitude of the intra-cavity field, we achieve a $π$-phase shift between two dipole states, resulting in a substantial enhancement of the signal-to-noise ratio. In addition to its applications in quantum dot based qubits in cQED architectures, this protocol could serve as a new promising tool for probing exotic electronic states in mesoscopic circuits embedded in cavities.
title Parametric Drive of a Double Quantum Dot in a Cavity
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2510.09120