2013Optics LettersRequires access

Laser ablation ignition of premixed methane and oxygen-enriched air mixtures using a tantalum target

Xiaohui Li, Xin Yu, Rongwei Fan, Yang Yu, Chang Liu, Deying Chen

Open publisher page 11 citations

Abstract

We report the laser ablation ignition of premixed methane and oxygen-enriched air mixtures using a tantalum target. The minimum laser pulse energy (MPE) of the ablation ignition was obtained as 2-4 mJ, which was reduced by one order of magnitude compared with that of the direct laser-induced gas breakdown ignition. The ignition time of the ablation ignition was investigated for the first time, to our best knowledge, by measuring the emission signal profiles due to the successfully ignited flames, and an ignition time as short as ~50 μs was obtained. The reduction in MPE will promote the miniaturization and, thus, the practical applications of laser ignition systems.

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What this paper is about

We report the laser ablation ignition of premixed methane and oxygen-enriched air mixtures using a tantalum target. The minimum laser pulse energy (MPE) of the ablation ignition was obtained as 2-4 mJ, which was reduced by one order of magnitude compared with that of the direct laser-induced gas breakdown ignition. The ignition time of the ablation ignition was investigated for the first time, to our best knowledge, by measuring the emission signal profiles due to the successfully ignited flames, and an ignition time as short as ~50 μs was obtained. The reduction in MPE will promote the miniaturization and, thus, the practical applications of laser ignition systems.

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OpenAlex reports 11 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

We report the laser ablation ignition of premixed methane and oxygen-enriched air mixtures using a tantalum target. The minimum laser pulse energy (MPE) of the ablation ignition was obtained as 2-4 mJ, which was reduced by one order of magnitude compared with that of the direct laser-induced gas breakdown ignition. The ignition time of the ablation ignition was investigated for the first time, to our best knowledge, by measuring the emission signal profiles due to the successfully ignited flames, and an ignition time as short as ~50 μs was obtained. The reduction in MPE will promote the miniaturization and, thus, the practical applications of laser ignition systems.

Key concepts: Methane, Materials science, Tantalum, Ablation, Ignition system, Optics, Laser ablation, Laser

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