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All-optical atomic clock based on coherent population trapping in
85
Rb
Mikko Merimaa
*
,
Thomas Lindvall
, I. Tittonen
, E. Ikonen
*
Corresponding author for this work
Not published at VTT
Helsinki University of Technology
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
136
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Citations (Scopus)
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85
Rb'. Together they form a unique fingerprint.
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Engineering
Good Agreement
100%
Reduced Temperature
100%
Experimental Parameter
100%
Emitting Diode
100%
Integration Time
100%
Resonance Frequency
100%
Square Root
100%
Signal Generator
100%
Sublevels
100%
Buffer Gas
100%
Temperature Dependence
100%
Frequency Standard
100%
Frequency Shift
100%
Microwave Frequency
100%
Precision Application
100%
Gas Mixture
100%
Keyphrases
All-optical
100%
85Rb
100%
Coherent Population Trapping
100%
Optical Atomic Clocks
100%
Coherent Population Trapping Resonance
100%
Temperature Effect
33%
Diode Laser
33%
Integration Time
33%
Experimental Parameters
33%
Frequency Stability
33%
Operation Parameters
33%
Frequency Dependence
33%
Frequency Shift
33%
System Development
33%
Resonant Frequency
33%
Reduction Temperature
33%
Gas Mixture
33%
Optical Setup
33%
Buffer Gas
33%
Square Root
33%
Allan Variance
33%
Relative Frequency
33%
Magnetic Sublevels
33%
Optically Induced
33%
Microwave Standards
33%
High-precision Application
33%
Ultra-narrow
33%
RF Generator
33%
Shift Estimation
33%
Edge Emitting
33%
Narrow Linewidth
33%
Emitting Diode
33%
INIS
populations
100%
trapping
100%
atomic clocks
100%
rubidium 85
100%
resonance
80%
stability
60%
line widths
40%
mixtures
20%
applications
20%
buffers
20%
operation
20%
temperature dependence
20%
gases
20%
yields
20%
signals
20%
lasers
20%
precision
20%
roots
20%
microwave radiation
20%
Physics
Atomic Clock
100%
Linewidth
100%
Gas Mixture
50%
Signal Generator
50%
Temperature Dependence
50%
Frequency Standard
50%
Frequency Shift
50%
Semiconductor Laser
50%