Cavity ring-down spectroscopy system and method of modulating a light beam therein
A cavity ring-down spectroscopy system and a method of modulating a light beam therein are provided. The cavity ring-down spectroscopy system includes at least one laser that generates a light beam, a first optical modulator positioned to attenuate the light beam from the at least one laser, a second optical modulator positioned to attenuate the light beam from the first optical modulator, a ring-down cavity positioned to receive the light beam from the second optical modulator, and at least one light sensor to detect an intensity of light leaked from the ring-down cavity.
1. A cavity ring-down spectroscopy system, comprising:
at least one laser that generates a light beam;
a first optical modulator positioned to attenuate the light beam from the at least one laser;
a second optical modulator positioned to attenuate the light beam from the first optical modulator;
a ring-down cavity positioned to receive the light beam from the second optical modulator;
a controller connected to the first optical modulator and the second optical modulator to direct the first optical modulator to attenuate the light beam by about 99.9% and to simultaneously direct the second optical modulator to further attenuate the light beam by about 99.9% to reduce or extinguish an intensity of the light beam from the first optical modulator; and
at least one light sensor to measure an intensity of light leaked from the ring-down cavity.
2. The cavity ring-down spectroscopy system of claim 1 , further comprising at least one focusing lens for focusing the light beam to match an optical mode of the ring-down cavity.
3. The cavity ring-down spectroscopy system of claim 1 , wherein each of the first and second optical modulators is an acousto-optic modulator or an electro-optic modulator.
4. A method of modulating a light beam in a cavity ring-down spectroscopy system, comprising:
generating a light beam via at least one laser;
receiving the light beam in a ring-down cavity;
attenuating the light beam from the at least one laser via a first optical modulator by about 99.9%;
attenuating the light beam from the first optical modulator via a second optical modulator by about 99.9%;
measuring a rate of decay of light leaked from the ring-down cavity.
5. The method of claim 4 , wherein the first and second optical modulators are acousto-optic modulators or electro-optic modulators.
6. The method of claim 4 , wherein the first optical modulator and the second optical modulator are simultaneously directed to attenuate the light beam travelling towards the ring-down cavity to reduce or extinguish an intensity of the light beam.