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Frequency Stabilization of the Sequence-Band CO2 Laser Using the 43-μm Fluorescence Method
Journal article   Open access   Peer reviewed

Frequency Stabilization of the Sequence-Band CO2 Laser Using the 43-μm Fluorescence Method

Sergei Ya. Tochitsky, Che-Chung Chou and Jow-Tsong Shy
IEEE Journal of Quantum Electronics, Vol.31(7), pp.1223-1230
1995

Abstract

The saturated 4.3-μm fluorescence stabilization method is applied to the 00°2-[10°1, 02°1]I, II sequence band CO2 laser transitions. For this purpose, the 4.3-μm fluorescence is observed using an external longitudinal CO2 absorption cell heated to 300 °C. The dependence of the frequency stability upon the gas temperature and pressure in the cell as well as laser parameters have been carried out in absolute frequency scale with the help of a two-channel heterodyne system. Under optimal conditions, the standard deviation of the beat note frequency between sequence band and regular band lasers for 30 s averaging time is less than 20 kHz, and the long-term stability and reproducibility is achieved at about 10 kHz. Copyright 1995 IEEE
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