Z Du, S Zhang, J Li, N Gao, K Tong - Applied sciences, 2019 - mdpi.com
The vast majority of gaseous chemical substances exhibit fundamental rovibrational absorption bands in the mid-infrared spectral region (2.5–25 μm), and the absorption of light …
In this work, laser absorption spectroscopy techniques are expanded in spatial resolution capability by utilizing a high-speed infrared camera to image flow fields backlit with tunable …
Y Wang, L Hong, C Zhang, J Wahlen… - Nature …, 2024 - nature.com
The synthesis of multiple narrow optical spectral lines, precisely and independently tuned across the near-to mid-infrared region, is a pivotal research area that enables selective and …
Mid-infrared laser absorption imaging of flame temperature and species concentration is expanded to three dimensions with linear tomographic methods using Tikhonov …
A tomographic laser absorption spectroscopy technique, utilizing mid-infrared light sources, is presented as a quantitative method to spatially resolve species and temperature profiles …
Abstract Development of novel mid-infrared (MIR) lasers could ultimately boost emerging detection technologies towards innovative spectroscopic and imaging solutions …
X Liu, G Zhang, Y Huang, Y Wang, F Qi - Applied Physics B, 2018 - Springer
We present a multi-line flame thermometry technique based on mid-infrared direct absorption spectroscopy of carbon dioxide at its v_3 v 3 fundamental around 4.2 μm that is …
We develop a novel mid-infrared CO2 absorption sensor exploiting spectrally blended features to characterize thermochemical non-uniformity of laminar premixed flames. A new …
We performed a combined experimental and numerical study of the flame uniformity for a standard McKenna burner by investigating the spatially-resolved temperature and species …