High-Fidelity Microwave-Polarization Control in a Rydberg-Ensemble Experiment

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Main Authors: Kurdak, Deniz, Li, Yaxin, Banner, Patrick R., Porto, J. V., Rolston, S. L.
Format: Preprint
Published: 2025
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_version_ 1866915437244055552
author Kurdak, Deniz
Li, Yaxin
Banner, Patrick R.
Porto, J. V.
Rolston, S. L.
author_facet Kurdak, Deniz
Li, Yaxin
Banner, Patrick R.
Porto, J. V.
Rolston, S. L.
contents Control of the polarization of microwave fields is a key experimental capability for a number of atomic physics platforms. However, producing high-fidelity microwaves requires a well-controlled microwave environment, where reflections that distort the polarization must be avoided or well characterized, a constraint that often conflicts with other experimental design considerations. Here we demonstrate a microwave control system capable of producing high-fidelity microwave polarizations in a Rydberg-ensemble experiment. We use three in-vacuum DC electrodes, repurposed as microwave antennae, to produce imperfect and initially unknown polarizations. Each source is driven with independent phase and amplitude control to generate the desired microwave fields. We probe the fields produced at the position of the atoms using Rydberg-EIT spectroscopy of the microwave-induced avoided crossings. We produce $σ_-$, $π$, and $σ_+$ polarized microwaves with > 99 % fidelity and generate their combinations. We extend our purification techniques to frequencies away from Rydberg resonances by utilizing an auxiliary microwave field, generating two-photon microwave resonances. The techniques developed here will facilitate the engineering of dipolar interactions in atomic and molecular physics experiments.
format Preprint
id arxiv_https___arxiv_org_abs_2508_06820
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle High-Fidelity Microwave-Polarization Control in a Rydberg-Ensemble Experiment
Kurdak, Deniz
Li, Yaxin
Banner, Patrick R.
Porto, J. V.
Rolston, S. L.
Atomic Physics
Quantum Physics
Control of the polarization of microwave fields is a key experimental capability for a number of atomic physics platforms. However, producing high-fidelity microwaves requires a well-controlled microwave environment, where reflections that distort the polarization must be avoided or well characterized, a constraint that often conflicts with other experimental design considerations. Here we demonstrate a microwave control system capable of producing high-fidelity microwave polarizations in a Rydberg-ensemble experiment. We use three in-vacuum DC electrodes, repurposed as microwave antennae, to produce imperfect and initially unknown polarizations. Each source is driven with independent phase and amplitude control to generate the desired microwave fields. We probe the fields produced at the position of the atoms using Rydberg-EIT spectroscopy of the microwave-induced avoided crossings. We produce $σ_-$, $π$, and $σ_+$ polarized microwaves with > 99 % fidelity and generate their combinations. We extend our purification techniques to frequencies away from Rydberg resonances by utilizing an auxiliary microwave field, generating two-photon microwave resonances. The techniques developed here will facilitate the engineering of dipolar interactions in atomic and molecular physics experiments.
title High-Fidelity Microwave-Polarization Control in a Rydberg-Ensemble Experiment
topic Atomic Physics
Quantum Physics
url https://arxiv.org/abs/2508.06820