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1.
Gas sensing system based on an all-fiber photothermal microcell
Matej Njegovec, Jure Javornik, Simon Pevec, Vedran Budinski, Tomaž Gregorec, Benjamin Lang, Manuel Tanzer, Alexander Bergmann, Denis Đonlagić, 2024, original scientific article

Abstract: This article presents an all-fiber, miniature Fabry-Perot gas sensor based on photothermal absorption spectroscopy with a custom-made and cost-efficient interrogation system. The sensing gas microcell has a diameter of 125 μ m and a length of 1 mm, and allows for free gas exchange within the optical resonator through micromachined slits. High light intensity and confinement are ensured by delivering the excitation light directly into the gas microcell through a lead-in single-mode fiber. This enhances the photothermal effect and provides a short system response time. The interrogation system utilizes the modulation of an excitation laser diode with a fixed frequency while locking the probe laser onto the gas microcell’s quadrature point (QP) and observing the variations of the reflected optical power. To show the potential of the proposed system, nitrogen dioxide (NO2 was measured in dry air. Thereby, a limit of detection of 20 ppm could be achieved for 10 s integration time. Furthermore, the small dimensions of the sensor allow for improved dynamic performance with photothermal modulation frequencies as high as 7 kHz.
Keywords: Fabry–Perot interferometer, FPI, fiber gas cell, fiber gas sensor, nitrogen dioxide, NO2, photothermal effect
Published in DKUM: 29.08.2024; Views: 96; Downloads: 16
.pdf Full text (15,77 MB)

2.
Mikrofluidna absorpcijska celica z veliko aktivno dolžino : magistrsko delo
Tomaž Gregorec, 2022, master's thesis

Abstract: V sklopu magistrskega dela je bila zajeta izdelava sistema za izven-osno lasersko varjenje steklenih kapilar in izdelava absorpcijske celice z veliko aktivno dolžino. Varilnik kapilar omogoča izdelavo posebnih struktur, ki ponujajo nove možnosti pri izdelavi optičnih vlakenskih senzorjev. Absorpcijska celica omogoča meritev absorpcije svetlobe v majhnih volumnih tekočin brez uporabe kolorimetričnih reagentov. Delovanje absorpcijske celice je bilo preizkušeno na meritvi deleža izopropanola v vodi in meritvi koncentracije v vodi raztopljenih bakrenih ionov.
Keywords: optično vlakno, absorpcija, velika aktivna dolžina, mikrofluidna celica, varjenje steklenih kapilar
Published in DKUM: 25.10.2022; Views: 695; Downloads: 91
.pdf Full text (3,75 MB)

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