DocumentCode
1054313
Title
Power-dependent correction to the scale factor in the laser gyro
Author
Aronowitz, F. ; Killpatrick, Joseph E. ; Callaghan, S.P.
Author_Institution
Honeywell, Inc., Minneapolis, MN, USA
Volume
10
Issue
2
fYear
1974
fDate
2/1/1974 12:00:00 AM
Firstpage
201
Lastpage
208
Abstract
Scale factor experiments were performed using an internal-mirror quartz-block 1.15-μm He-Ne laser, having a cavity length of 9.868 cm. The configuration was an equilateral triangle and the nominal geometric scale factor was
counts per revolution. To avoid lock-in (20°/s) the laser was rotated at rates of
/s. Using an equal mixture of neon isotopes, the scale factor was measured as a function of frequency tuning and, at the peak power frequency, as a function of discharge current. At the peak power frequency, the relative scale factor was reduced by 0.3 percent over the value found off the center. The slope of the relative scale factor variation was -0.03 percent per percent gain. To explain the experimental results, both radiation trapping and a strong signal theory were needed. Calculations showed a strong scale factor variation with loss that was ∼414 times the gain variation.
counts per revolution. To avoid lock-in (20°/s) the laser was rotated at rates of
/s. Using an equal mixture of neon isotopes, the scale factor was measured as a function of frequency tuning and, at the peak power frequency, as a function of discharge current. At the peak power frequency, the relative scale factor was reduced by 0.3 percent over the value found off the center. The slope of the relative scale factor variation was -0.03 percent per percent gain. To explain the experimental results, both radiation trapping and a strong signal theory were needed. Calculations showed a strong scale factor variation with loss that was ∼414 times the gain variation.Keywords
Frequency; Gas lasers; Isotopes; Laser modes; Laser theory; Laser tuning; Mirrors; Power lasers; Ring lasers; Solid lasers;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.1974.1145792
Filename
1145792
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