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Spectral Measurements of HF and VHF Radio Frequency Electric Fields Using Rydberg Rabi Matching

ORAL

Abstract

Rydberg atoms are useful as calibration-free sensors of electric field amplitude when target radio frequencies are resonant to a Rydberg-Rydberg transition. However, detecting sub-GHz carriers remains challenging. In this work, we generate atomic quasi-energy sidebands using a field in the range of 3 MHz to 300 MHz, the HF and VHF bands, then probe these states using a Rydberg-resonant microwave field to controllably split Rydberg states. By matching the resonant microwave field’s Rabi frequency to the HF/VHF field’s frequency, we convert Townes-Merritt sideband transmission peaks into a secondary line splitting within each Autler-Townes peak that grows non-linearly with HF/VHF field amplitude. This experiment demonstrates reception of meters-long radio waves in a subwavelength centimeter-sized vapor cell and reception of amplitude-modulated (AM) information on MHz-range carriers, useful for long-range reception. We present theory using only two levels and effective polarizabilities, which predicts low field effects well, but is insufficient for the state mixing evident with higher fields approaching 1 V/cm. We compare our sensor to other similar designs, noting that this scheme applies an inherent band-pass filter for the carrier frequency, which is automatically downconverted by the atoms.

Publication: https://arxiv.org/abs/2212.03304

Presenters

  • Andrew P Rotunno

    National Institute of Standards and Technology, Boulder, National Institute of Standards and Technology

Authors

  • Andrew P Rotunno

    National Institute of Standards and Technology, Boulder, National Institute of Standards and Technology

  • Samuel Berweger

    National Institute of Standards and Technology, Boulder, National Institute of Standards and Tech, National Institute of Standards and Technology

  • Nikunjkumar Prajapati

    National Institute of Standards and Technology, Boulder, National Institute of Standards and Technology

  • Maitreyi Jayaseelan

    University of Colorado, Boulder

  • Kaleb Campbell

    University of Colorado, Boulder, National Institute of Standards and Technology

  • Alexandra B Artusio-Glimpse

    National Institute of Standards and Technology, Boulder, National Institute of Standards and Technology

  • Matthew T Simons

    National Institute of Standards and Technology, Boulder, National Institute of Standards and Technology Boulder, National Institute of Standards and Technology

  • Christopher L Holloway

    National Institute of Standards and Technology