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Simple technique for sequential q-switching of molecular lasers
Applied Optics
|February 2, 2010
Summary
A novel optical scanner technique enables sequential Q-switching of molecular lasers, facilitating multi-wavelength operation for diverse applications like spectroscopy and gain measurements.
Area of Science:
- Laser Physics
- Molecular Spectroscopy
- Optical Engineering
Background:
- Conventional Q-switching methods for molecular lasers can be complex.
- Multi-wavelength laser sources are valuable for various scientific investigations.
Purpose of the Study:
- To present a simple technique for sequential Q-switching of molecular lasers using an optical scanner.
- To demonstrate the capability of this method for multi-wavelength laser generation and its applications.
Main Methods:
- Utilizing an optical scanner as a folding element within a laser cavity.
- The cavity comprises a stationary diffraction grating and a partially reflecting mirror.
- Sequential Q-switching demonstrated on a carbon dioxide (CO(2)) laser.
Main Results:
- Observed over sixty-two transitions for a CO(2) laser between 9.2 and 10.8 micrometers.
- Achieved rapid repetition rates of 200 Hz and narrow laser pulses (<5 microseconds).
- Demonstrated selective absorption measurements of CO(2) laser wavelengths by ethylene (C(2)H(4)).
Conclusions:
- The developed technique offers a versatile multi-wavelength laser source suitable for laser propagation studies, absorption spectroscopy, and gain measurements.
- This method is adaptable for sequential Q-switching of other molecular lasers like carbon monoxide (CO) and hydrogen fluoride (HF).
- The rapid repetition rates and narrow pulses enable the use of conventional signal processing techniques.

