DocumentCode :
1212182
Title :
Iodine stabilized dye laser system for frequency measurements in the visible and near IR region of the spectrum
Author :
Madej, Alan A. ; Ball, Mark
Author_Institution :
Inst. for Nat. Meas. Stand., Nat. Res. Council of Canada, Ottawa, Ont., Canada
Volume :
52
Issue :
2
fYear :
2003
fDate :
4/1/2003 12:00:00 AM
Firstpage :
272
Lastpage :
276
Abstract :
An iodine stabilized dye laser system is described that provides traceable measurement of reference frequencies in the visible spectrum from 540 to 670 nm and in the near infrared at 1.15 μm. The system allows calibration of the widely used 633 nm, 612 nm, and 543 nm HeNe laser systems. Also, frequency measurements of a polarization stabilized 1153 nm HeNe laser have been performed via frequency doubling and comparison with the dye system operating on the corresponding 576 nm lines. Studies of the shift sensitivities of the system at various wavelengths of interest are described for variation of iodine cell pressure, laser modulation amplitude, and optical saturation power. The dye system was also stabilized to hyperfine components associated with the 6-3 P(33) iodine transition and compared with a 633 nm iodine stabilized HeNe standard.
Keywords :
calibration; dye lasers; frequency standards; iodine; laser frequency stability; laser tuning; optical harmonic generation; optical modulation; 1.15 micron; 1153 nm; 540 to 670 nm; 543 nm; 576 nm; 612 nm; 633 nm; HeNe; HeNe laser system calibration; I; frequency control; frequency doubling; iodine cell pressure; iodine stabilized dye laser systems; iodine transition hyperfine components; laser modulation amplitude; laser stability; laser stabilization; laser tuning; optical saturation power; polarization stabilized HeNe lasers; reference frequency traceable measurements; spectroscopy; standards; system shift sensitivities; visible/near IR frequency measurements; wavelength measurement; Amplitude modulation; Calibration; Frequency measurement; Infrared spectra; Laser stability; Laser transitions; Optical modulation; Optical polarization; Performance evaluation; Power lasers;
fLanguage :
English
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9456
Type :
jour
DOI :
10.1109/TIM.2003.811662
Filename :
1202027
Link To Document :
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