Fundamental Sensitivities of Electrically Small Antennas and Rydberg Quantum Receivers.
POSTER
Abstract
Rydberg Sensors hold promise for highly sensitive RF measurements in the high frequency (HF) band of 3 –30 MHz and are of interest for a multitude of reasons including their ability to make non-perturbing measurements and their compact size. In the HF band, their mm to cm scale sensor heads are significantly smaller than traditional impedance matched antennas. We evaluate the fundamental sensitivities of electrically small loop and dipole antennas coupled to unmatched loads and quantum Rydberg-atom sensors in the HF regime. Although Rydberg sensors are fundamentally 10 dB more sensitive than unmatched electrically small dipoles, with currently available techniques, Rydberg sensors are approximately 50 dB less sensitive than classical antennas. Our results indicate there is room for growth within the field and more research is needed to advance Rydberg sensors towards their fundamental limits.
Presenters
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Kermit-James LeBlanc
Army Research Laboratory
Authors
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Kermit-James LeBlanc
Army Research Laboratory
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David Meyer
Army Research Laboratory
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Kevin C Cox
US Army Res Dev & Eng Command
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Peter Elgee
US Army Research Lab, Army Research Laboratory
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Joshua C Hill
US Army Research Lab
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Kelly M Backes
The MITRE Corporation, MITRE Corporation
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Neel Malvania
The MITRE Corporation, MITRE, MITRE Corporation
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Kathryn L Nicolich
The MITRE Corporation, MITRE Corporation
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Charlie T Fancher
The MITRE Corporation, MITRE, MITRE Corporation