Investigating electromagnetically induced transparency spectral lineshape distortion due to non-uniform fields in Rydberg-atom electrometry

Author:

Rotunno Andrew P.1ORCID,Holloway Christopher L.1ORCID,Prajapati Nikunjkumar1ORCID,Berweger Samuel1ORCID,Artusio-Glimpse Alexandra B.1ORCID,Brown Roger1ORCID,Simons Matthew1ORCID,Robinson Amy K.2ORCID,Kayim Baran N.3ORCID,Viray Michael A.3ORCID,Jones Jasmine F.3ORCID,Sawyer Brian C.3ORCID,Wyllie Robert3ORCID,Walker Thad4ORCID,Ziolkowski Richard W.5ORCID,Jefferts Steven R.6ORCID,Geibel Steven6ORCID,Wheeler Jonathan6ORCID,Imhof Eric6ORCID

Affiliation:

1. National Institute of Standards and Technology 1 , Boulder, Colorado 80305, USA

2. ANSYS, Inc. 2 , Boulder, Colorado 80301, USA

3. Georgia Tech Research Institute 3 , Atlanta, Georgia 30332, USA

4. Department of Physics, University of Madison-Wisconsin 4 , Madison, Wisconsin 53706, USA

5. Department of Electrical and Computer Engineering, University of Arizona 5 , Tucson, Arizona 85721, USA

6. Northrop Grumman 6 , Woodland Hills, California 91361, USA

Abstract

We investigate the effects of spatially non-uniform radio-frequency electric (E) field amplitudes on the spectral line shapes of electromagnetically induced transparency (EIT) signals in Rydberg atomic systems used in electrometry (i.e., the metrology of E-field strengths). Spatially non-uniform fields distort the EIT spectra from that of an ideal case, and understanding this distortion is important in the development of Rydberg atom-based sensors, as these distortions can limit accuracy and sensitivity. To characterize this distortion, we present a model that approximates the atom vapor as multi-layered media and then uses Beer’s law to combine the absorption through its many discrete thin segments. We present a set of expected line distortions caused by various RF electric-field distributions found in practice. This provides an intuitive diagnostic tool for experiments. We compare this model to measured experimental atomic spectra in both two-photon and three-photon excitation schemes in the presence of non-uniform radio-frequency fields. We show that we can accurately model and reproduce the EIT lineshape distortion observed in these experimental data.

Funder

Defense Advanced Research Projects Agency

Publisher

AIP Publishing

Subject

General Physics and Astronomy

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