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Subwavelength micromachined vapor-cell-based Rydberg quantum antennas
Avital Giat
, Kfir Levi
, Ori Nefesh
,
Liron Stern
*
*
Corresponding author for this work
The Institute of Applied Physics
Research output
:
Contribution to journal
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Article
›
peer-review
1
Scopus citations
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Keyphrases
Cell-based
100%
Subwavelength
100%
Micromachining
100%
Vapor Cell
100%
Rydberg
100%
Quantum Antennas
100%
Radiofrequency Fields
66%
Electrometry
66%
Light Intensity
33%
Quantum Technologies
33%
Millimeter-scale
33%
Chip-scale
33%
Ultrasensitive
33%
Atomic Clock
33%
Quantum Sensing
33%
Line Shape
33%
Antenna Element
33%
Scale Dimension
33%
Spatial Position
33%
Wafer-scale
33%
Magnetometer
33%
Electrostatic Field
33%
Rydberg Atoms
33%
Internal Electric Field
33%
Complex Landscapes
33%
Near-field
33%
Rydberg Sensing
33%
Electromagnetic Field Measurement
33%
Rydberg Spectroscopy
33%
Radiofrequency Imaging
33%
Chip-scale Quantum Sensors
33%
Radio Frequency chip
33%
Physics
Antenna
100%
Electric Field
66%
Electromagnetic Fields
33%
Quantum Technology
33%
Luminous Intensity
33%
Atomic Clock
33%
Lineshape
33%
Electromagnetism
33%
Quantum Sensing
33%
Chemistry
Radiofrequency Field
100%
Electric Field
66%
Lineshape
33%
Spectroscopy
33%
Electromagnetic Fields
33%
Electromagnetism
33%