Sustainable and low-emission combustion is in need of novel schemes to enhance combustion efficiency and control to meet up with new emission standards and comply with varying quality of renewable fuels. Plasma actuation is a promising candidate to achieve this goal but few detailed experiments have been carried out that target how specific combustion and plasma related species are affected by the coupling of plasma and combustion chemistry. Atomic hydrogen is such a species that here is imaged by using the two-photon absorption laser induced fluorescence (TALIF) technique as an atmospheric pressure methane-air flame is actuated by nanosecond repetitively pulsed (NRP) discharges. Atomic hydrogen is observed both in the flame and in the disc...
Among different approaches to generate mirrorless lasing, resonant multiphoton pumping of gas consti...
We report on kilohertz-repetition-rate flame temperature measurements performed using blue diode las...
The use of diode lasers for spatially resolved temperature imaging is demonstrated in low-pressure p...
The temporal dynamics of the spatial distribution of atomic hydrogen and oxygen in a lean methane-ai...
We report on an observation of bi-directional 656 nm lasing action of atomic hydrogen in a premixed ...
By aiming to establish single-ended standoff combustion diagnostics, bidirectional lasing emissions ...
In this Letter, we have investigated 845 nm lasing generation in atomic oxygen, present in a lean me...
International audienceWe performed simultaneous planar laser-induced fluorescence (PLIF) and chemilu...
Hydrogen atoms are key species in combustion of hydrogen/hydrocarbon fuels. Interference-free detect...
Atmospheric pressure plasmas are effective sources for reactive species, making them applicable for ...
Ultrashort-pulse, femtosecond (fs)-duration laser techniques are powerful tools for investigating ph...
In the last decade, nanosecond repetitively pulsed discharges (NRPD) had became very popular, becaus...
Using of non-equilibrium plasma for ignition, combustion and high speed flow applications are rapidl...
This work aims to advance understanding of the coupling between temperature and soot. The ability to...
This work aims to characterize the effects of pulse repetition rate (PRR) and flow speed on dielectr...
Among different approaches to generate mirrorless lasing, resonant multiphoton pumping of gas consti...
We report on kilohertz-repetition-rate flame temperature measurements performed using blue diode las...
The use of diode lasers for spatially resolved temperature imaging is demonstrated in low-pressure p...
The temporal dynamics of the spatial distribution of atomic hydrogen and oxygen in a lean methane-ai...
We report on an observation of bi-directional 656 nm lasing action of atomic hydrogen in a premixed ...
By aiming to establish single-ended standoff combustion diagnostics, bidirectional lasing emissions ...
In this Letter, we have investigated 845 nm lasing generation in atomic oxygen, present in a lean me...
International audienceWe performed simultaneous planar laser-induced fluorescence (PLIF) and chemilu...
Hydrogen atoms are key species in combustion of hydrogen/hydrocarbon fuels. Interference-free detect...
Atmospheric pressure plasmas are effective sources for reactive species, making them applicable for ...
Ultrashort-pulse, femtosecond (fs)-duration laser techniques are powerful tools for investigating ph...
In the last decade, nanosecond repetitively pulsed discharges (NRPD) had became very popular, becaus...
Using of non-equilibrium plasma for ignition, combustion and high speed flow applications are rapidl...
This work aims to advance understanding of the coupling between temperature and soot. The ability to...
This work aims to characterize the effects of pulse repetition rate (PRR) and flow speed on dielectr...
Among different approaches to generate mirrorless lasing, resonant multiphoton pumping of gas consti...
We report on kilohertz-repetition-rate flame temperature measurements performed using blue diode las...
The use of diode lasers for spatially resolved temperature imaging is demonstrated in low-pressure p...