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Laser heterodyne spectroscopy of
127
I
2
hyperfine structure near 532 nm
Ady Arie
*
, Robert L. Byer
*
Corresponding author for this work
School of Electrical Engineering
Stanford University
Research output
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Article
›
peer-review
97
Scopus citations
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Dive into the research topics of 'Laser heterodyne spectroscopy of
127
I
2
hyperfine structure near 532 nm'. Together they form a unique fingerprint.
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Keyphrases
Absolute Frequency
50%
Allan Variance
50%
Diode-pumped
50%
Frequency Doubling
50%
Frequency Splitting
50%
Heart Rate
100%
Heterodyne Spectroscopy
100%
Hyperfine Coupling Constant
50%
Hyperfine Spectra
50%
Hyperfine Structure
100%
Iodine
50%
Laser Heterodyne
100%
Measured Spectrum
50%
Measurement Time
50%
Minimum Value
50%
Nd-YAG Laser
50%
Rovibrational Transition
50%
Two-frequency
50%
Two-sample
50%
Vibrational Levels
100%
X States
50%
X-10
50%
Physics
Hyperfine Structure
100%
Time Measurement
100%
YAG Laser
100%
Chemistry
Hyperfine Structure
100%
Spectroscopy
100%
Vibrational Level
100%