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Dual-pump vibrational/rotational femtosecond/ picosecond coherent anti-Stokes Raman scattering temperature and species measurements

机译:双泵振动/旋转飞秒/皮秒相干反斯托克斯拉曼散射温度和物质测量

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摘要

A method for simultaneous ro-vibrational and pure-rotational hybrid femtosecond/picosecond coherent anti-Stokes Raman scattering (fs/ps CARS) is presented for multi-species detection and improved temperature sensitivity from room temperature to flame conditions. N2∕CH4 vibrational and N2∕O2∕H2 rotational Raman coherences are excited simultaneously using fs pump pulses at 660 and 798 nm, respectively, and a common fs Stokes pulse at 798 nm. A fourth narrowband 798 nm ps pulse probes all coherence states at a time delay that minimizes nonresonant background and the effects of collisions. The transition strength is concentration dependent, while the distribution among observed transitions is related to temperature through the Boltzmann distribution. The broadband excitation pulses and multiplexed signal are demonstrated for accurate thermometry from 298 to 2400 K and concentration measurements of four key combustion species.
机译:提出了同时旋转振动和纯旋转混合飞秒/皮秒相干反斯托克斯拉曼散射(fs / ps CARS)的方法,用于多物种检测并提高了从室温到火焰条件的温度敏感性。 N2 ∕ CH4振动和N2 ∕ O2 ∕ H2旋转拉曼相干分别使用660 nm和798 nm的fs泵浦脉冲和798 nm的公共fs斯托克斯脉冲同时激发。第四个窄带798 nm ps脉冲以一定的延时探测所有相干状态,从而最大程度地减少了非共振本底和碰撞的影响。转变强度取决于浓度,而观察到的转变之间的分布与玻尔兹曼分布中的温度有关。演示了宽带激发脉冲和多路复用信号,可实现298至2400 K的精确测温和四种关键燃烧物质的浓度测量。

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