Electrically-Small Rydberg Sensor for Three-Dimensional Determination of rf k-Vectors
Abstract
We present an electrically-small Rydberg atom electric field sensor with the ability to extract the three-dimensional -vector of an elliptically polarized radio frequency (rf) field. In most mediums, the -vector (or wave vector) provides the direction of propagation of an electromagnetic wave. Our method uses a field vector measurement at a single point in space and is thus compatible with a sensor volume that is arbitrarily small compared to the carrier wavelength. We measure the -vector of a circularly polarized signal field with average absolute errors in the polar and azimuthal angles of and respectively, and statistical noise of and . Additionally, we characterize the performance of the sensor as a function of the ellipticity of the input field and the size of the sensing region. We find that the sensor works over a broad range of ellipticities and validate that an electrically-small sensing region is optimal.
Cite
@article{arxiv.2503.04670,
title = {Electrically-Small Rydberg Sensor for Three-Dimensional Determination of rf k-Vectors},
author = {Peter K. Elgee and Kevin C. Cox and Joshua C. Hill and Paul D. Kunz and David H. Meyer},
journal= {arXiv preprint arXiv:2503.04670},
year = {2025}
}
Comments
6 pages, 4 figures