DocumentCode :
86249
Title :
Broadband Rydberg Atom-Based Electric-Field Probe for SI-Traceable, Self-Calibrated Measurements
Author :
Holloway, Christopher L. ; Gordon, Joshua A. ; Jefferts, Steven ; Schwarzkopf, Andrew ; Anderson, David A. ; Miller, Stephanie A. ; Thaicharoen, Nithiwadee ; Raithel, Georg
Author_Institution :
U.S. Dept. of Commerce, Nat. Inst. of Stand. & Technol. (NIST), Boulder, CO, USA
Volume :
62
Issue :
12
fYear :
2014
fDate :
Dec. 2014
Firstpage :
6169
Lastpage :
6182
Abstract :
We discuss a fundamentally new approach for the measurement of electric (E) fields that will lead to the development of a broadband, direct SI-traceable, compact, self-calibrating E-field probe (sensor). This approach is based on the interaction of radio frequency (RF) fields with alkali atoms excited to Rydberg states. The RF field causes an energy splitting of the Rydberg states via the Autler-Townes effect and we detect the splitting via electromagnetically induced transparency. In effect, alkali atoms placed in a vapor cell act like an RF-to-optical transducer, converting an RF E-field strength measurement to an optical frequency measurement. We demonstrate the broadband nature of this approach by showing that one small vapor cell can be used to measure E-field strengths over a wide range of frequencies: 1 GHz to 500 GHz. The technique is validated by comparing experimental data to both numerical simulations and far-field calculations for various frequencies. We also discuss various applications, including: a direct traceable measurement, the ability to measure both weak and strong field strengths, compact form factors of the probe, and sub-wavelength imaging and field mapping.
Keywords :
UHF measurement; calibration; electric field measurement; electric sensing devices; frequency measurement; microwave imaging; microwave measurement; millimetre wave imaging; millimetre wave measurement; numerical analysis; optical sensors; optical variables measurement; probes; submillimetre wave imaging; submillimetre wave measurement; transducers; Autler-Townes effect; E-field sensor; RF E-field strength measurement; RF field; RF-to-optical transducer; SI-traceable self-calibrated measurement; alkali atom; broadband Rydberg atom-based electric-field probe; broadband direct SI-traceable compact self-calibrating-field probe; electric field measurement; electromagnetically induced transparency; energy splitting; field mapping; frequency 1 GHz to 500 GHz; numerical simulation; optical frequency measurement; radiofrequency field; subwavelength imaging; vapor cell; Atomic beams; Atomic clocks; Atomic measurements; Frequency measurement; Measurement by laser beam; Probes; Radio frequency; Atom based metrology; Autler-Townes splitting; Rydberg atoms; broadband sensor and probe; electrical field measurements and sensor; electromagnetically induced transparency (EIT); sub-wavelength imaging;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2014.2360208
Filename :
6910267
Link To Document :
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