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Laser-induced condensation by ultrashort laser pulses at 248 nm

机译:248 nm的超短激光脉冲引起的激光冷凝

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摘要

We compare laser-induced condensation by UV laser pulses of femtosecond, sub-picosecond, and nanosecond duration between each other, as well as with respect to near-infrared (NIR) (800 nm) ultrashort laser pulses. Particle nucleation by UV pulses is so efficient that their growth beyond several hundreds of nm is limited by the local concentration of water vapour molecules. Furthermore, we evidence a dual mechanism: While condensation induced by ultrashort UV pulses rely on nitrogen photo-oxidative chemistry like in the NIR, nanosecond laser-induced condensation occurs without NO2 production, evidencing the domination of a mechanism distinct from that previously identified in the femtosecond regime.
机译:我们比较了飞秒,亚皮秒和纳秒级持续时间之间的紫外线激光脉冲以及相对于近红外(NIR)(800 nm)超短激光脉冲的激光诱导凝结。紫外线脉冲产生的粒子成核非常有效,以至于其超过数百纳米的生长受到水蒸气分子局部浓度的限制。此外,我们证明了双重机理:虽然超短UV脉冲诱导的凝结像NIR一样依赖于氮的光氧化化学作用,但纳秒级的激光诱导的凝结却没有产生NO2,这证明了该机理与先前在NIR中发现的机理不同。飞秒机制。

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