Title :
Atomic and molecular spectroscopy with a phase-locked, continuous-wave optical parametric oscillator
Author :
Ikegami, Takeshi ; Inaba, Hajime ; Ohshima, Shin-Ichi
Author_Institution :
Time & Frequency Div., Agency of Ind. Sci. & Technol., Ibaraki, Japan
Abstract :
We demonstrated the phase-locking and continuous tuning capabilities of a continuous-wave, monolithic optical parametric oscillator (cw-OPO). At first, the cw-OPO was phase-locked to an optical frequency comb in the 830 nm region. The residual phase noise under phase-locking was 220 mrad in rms and the energy concentration to the carrier was 95%. Next, the signal light from the cw-OPO was phase-modulated by an external electrooptic modulator (EOM) in the microwave frequency. The single sideband was extracted by using a diffraction grating and a spatial filter. We could observe the Doppler broadened absorption and fluorescence profile of the Cs-D2 line by tuning the signal wavelength to 852 nm and by scanning the microwave modulation frequency. We are trying the sub-Doppler spectroscopy of several atoms and molecules with the phase-locked cw-OPO and these results will also be presented.
Keywords :
Doppler broadening; atomic absorption spectroscopy; caesium; diffraction gratings; electro-optical modulation; fluorescence; infrared spectra; optical filters; optical harmonic generation; optical parametric oscillators; optical phase locked loops; optical tuning; phase modulation; phase noise; 830 nm; 852 nm; Cs-D2 line; Doppler broadened absorption; EOM; atomic spectroscopy; continuous-wave optical parametric oscillator; cw-OPO; diffraction grating; external electrooptic modulator; fluorescence profile; microwave frequency; microwave modulation frequency; molecular spectroscopy; optical frequency comb; phase noise; phase-locking; phase-modulation; signal wavelength tuning; spatial filter; Atom optics; Frequency; Nonlinear optics; Optical filters; Optical modulation; Optical noise; Optical tuning; Oscillators; Phase noise; Spectroscopy;
Conference_Titel :
Quantum Electronics and Laser Science Conference, 2005. QELS '05
Print_ISBN :
1-55752-796-2
DOI :
10.1109/QELS.2005.1549072