We present a single mode multi-section quantum cascade laser source composed of three dierent sections: master oscillator, gain and phase section. Non-uniform pumping of the QCL’s gain reveals that the various laser sections are strongly coupled. Simulations of the electronic and optical properties of the laser (based on the density matrix and scattering matrix formalisms, respectively) were performed and a good agreement with measurements is obtained. In particular, a pure modulation of the laser output power can be achieved. This capability of the device is applied in tunable-laser spectroscopy of N2O where background-free quartz enhanced photo acoustic spectral scans with nearly perfect Voigt line shapes for the selected absorption line are obtained.
Mid infrared quantum cascade laser operating in pure amplitude modulation for background-free trace gas spectroscopy / Bidaux, Yves; Bismuto, Alfredo; Patimisco, Pietro; Sampaolo, Angelo; Gresch, Tobias; Strubi, Gregory; Blaser, Stéphane; Tittel, Frank K; Spagnolo, Vincenzo Luigi; Muller, Antoine; Jerome, Faist. - In: OPTICS EXPRESS. - ISSN 1094-4087. - 24:23(2016), pp. 26464-26471. [10.1364/OE.24.026464]
Mid infrared quantum cascade laser operating in pure amplitude modulation for background-free trace gas spectroscopy
Patimisco, Pietro;Sampaolo, Angelo;SPAGNOLO, Vincenzo Luigi;
2016-01-01
Abstract
We present a single mode multi-section quantum cascade laser source composed of three dierent sections: master oscillator, gain and phase section. Non-uniform pumping of the QCL’s gain reveals that the various laser sections are strongly coupled. Simulations of the electronic and optical properties of the laser (based on the density matrix and scattering matrix formalisms, respectively) were performed and a good agreement with measurements is obtained. In particular, a pure modulation of the laser output power can be achieved. This capability of the device is applied in tunable-laser spectroscopy of N2O where background-free quartz enhanced photo acoustic spectral scans with nearly perfect Voigt line shapes for the selected absorption line are obtained.File | Dimensione | Formato | |
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