2026/03/13 by Hideki T. Miyazaki, Takeshi Kasaya, Masahiro Saito +3 · 1 voice
Physics and Astronomy · #physics.optics
paper · pdf · doi:10.1364/oe.596786
arxiv published 2026/03/13 · arxiv updated 2026/04/22
We demonstrate noninvasive measurement of gas temperature based on the optical gas imaging. Gas flows containing carbon dioxide (CO2) appear as either bright or dark images, depending on the relative temperatures of the background and the gas, when using a narrowband mid-infrared camera tuned to the CO2 absorption wavelength at 4.3 micrometers. When the background temperature is varied continuously, the gas image vanishes transiently and then the contrast reverses. The specific background temperature at the point when the gas image disappears provides the gas temperature. This technique is an evolved implementation of the classical line reversal method, made possible by advanced infrared devices. We also apply this technique to two-dimensional temperature mapping and to dynamic emissions from engine exhaust and human breathing.