A planar cloverleaf antenna for the creation of circularly polarized microwave fields

Fuente: arXiv
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Main Authors: Yuan, Weijun, Zhang, Siwei, Bigagli, Niccolò, Warner, Claire, Stevenson, Ian, Will, Sebastian
Format: Preprint
Published: 2023
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_version_ 1866910690778808320
author Yuan, Weijun
Zhang, Siwei
Bigagli, Niccolò
Warner, Claire
Stevenson, Ian
Will, Sebastian
author_facet Yuan, Weijun
Zhang, Siwei
Bigagli, Niccolò
Warner, Claire
Stevenson, Ian
Will, Sebastian
contents We report on the design and characterization of a compact microwave antenna for atomic and molecular physics experiments. The antenna is comprised of four loop antennas arranged in cloverleaf shape, allowing for precise adjustment of polarization by tuning the relative phase of the loops. We optimize the antenna for left-circularly polarized microwaves at 3.5 GHz and characterize its performance using ultracold NaCs molecules as a precise quantum sensor. Observing an unusually high Rabi frequency of $2π\times 46$ MHz, we extract an electric field amplitude of 33(2) V/cm at 22 mm distance from the antenna. The polarization ellipticity is 2.3(4) degrees, corresponding to a 24 dB suppression of right-circular polarization. The cloverleaf antenna is planar and provides large optical access, making it highly suitable for quantum control of atoms and molecules, and potentially other quantum systems that operate in the microwave regime.
format Preprint
id arxiv_https___arxiv_org_abs_2306_14791
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle A planar cloverleaf antenna for the creation of circularly polarized microwave fields
Yuan, Weijun
Zhang, Siwei
Bigagli, Niccolò
Warner, Claire
Stevenson, Ian
Will, Sebastian
Atomic Physics
Quantum Gases
Instrumentation and Detectors
Quantum Physics
We report on the design and characterization of a compact microwave antenna for atomic and molecular physics experiments. The antenna is comprised of four loop antennas arranged in cloverleaf shape, allowing for precise adjustment of polarization by tuning the relative phase of the loops. We optimize the antenna for left-circularly polarized microwaves at 3.5 GHz and characterize its performance using ultracold NaCs molecules as a precise quantum sensor. Observing an unusually high Rabi frequency of $2π\times 46$ MHz, we extract an electric field amplitude of 33(2) V/cm at 22 mm distance from the antenna. The polarization ellipticity is 2.3(4) degrees, corresponding to a 24 dB suppression of right-circular polarization. The cloverleaf antenna is planar and provides large optical access, making it highly suitable for quantum control of atoms and molecules, and potentially other quantum systems that operate in the microwave regime.
title A planar cloverleaf antenna for the creation of circularly polarized microwave fields
topic Atomic Physics
Quantum Gases
Instrumentation and Detectors
Quantum Physics
url https://arxiv.org/abs/2306.14791