Rydberg-atom-based digital communication using a continuously tunable radio-frequency carrier
Published 2019 View Full Article
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Title
Rydberg-atom-based digital communication using a continuously tunable radio-frequency carrier
Authors
Keywords
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Journal
OPTICS EXPRESS
Volume 27, Issue 6, Pages 8848
Publisher
The Optical Society
Online
2019-03-13
DOI
10.1364/oe.27.008848
References
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Related references
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- Atom-Based Radio-Frequency Field Calibration and Polarization Measurement Using Cesium nDJ Floquet States
- (2017) Yuechun Jiao et al. Physical Review Applied
- Atom-Based Sensing of Weak Radio Frequency Electric Fields Using Homodyne Readout
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- (2016) Matt T. Simons et al. APPLIED PHYSICS LETTERS
- Atom based RF electric field sensing
- (2015) Haoquan Fan et al. JOURNAL OF PHYSICS B-ATOMIC MOLECULAR AND OPTICAL PHYSICS
- Five disruptive technology directions for 5G
- (2014) Federico Boccardi et al. IEEE COMMUNICATIONS MAGAZINE
- Broadband Rydberg Atom-Based Electric-Field Probe for SI-Traceable, Self-Calibrated Measurements
- (2014) Christopher L. Holloway et al. IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION
- Microwave electrometry with Rydberg atoms in a vapour cell using bright atomic resonances
- (2012) Jonathon A. Sedlacek et al. Nature Physics
- Atomic Sensors – A Review
- (2011) John Kitching et al. IEEE SENSORS JOURNAL
- Electromagnetically Induced Transparency with Rydberg Atoms
- (2011) David Petrosyan et al. PHYSICAL REVIEW LETTERS
- Spectrum Sensing for Cognitive Radio
- (2009) S. Haykin et al. PROCEEDINGS OF THE IEEE
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