首页> 外文期刊>The Journal of Chemical Physics >ELECTRONIC DEPHASING IN NONPOLAR ROOM TEMPERATURE LIQUIDS - UV PHOTON ECHO PULSE DURATION DEPENDENT MEASUREMENTS
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ELECTRONIC DEPHASING IN NONPOLAR ROOM TEMPERATURE LIQUIDS - UV PHOTON ECHO PULSE DURATION DEPENDENT MEASUREMENTS

机译:非极性室温液体中的电子脱色-UV光子回波脉冲持续时间的相关测量

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The homogeneous dephasing times, T-2, were obtained for the nonpolar chromophore diphenyl acetylene (DPA) dissolved in the room temperature nonpolar solvents 2-methyl pentane (2MP) and cyclohexane. The dephasing times were determined by comparing the pulse duration dependent resonant enhancement of the total two pulse four wave mixing signal to a numerically evaluated theory. Data was taken with 80 and 400 fs transform limited pulses at 300 nm, the electronic origin of DPA in the two solvents. In DPA/2MP, T-2=120 fs and in DPA/cyclohexane, T-2=500 Ps. The analysis required concentration and power dependent measurements to quantitatively determine the resonant. enhancement of the signal arising from the addition of DPA to the solvents above the nonresonant solvent only signal. Fundamental experimental difficulties inherent in performing UV femtosecond two pulse photon echoes, in particular the competition with nonresonant signal, are discussed. An efficient numerical algorithm for calculating photon echo decay curves with realistic pulse envelope is described. (C) 1997 American Institute of Physics. [References: 31]
机译:对于溶于室温非极性溶剂2-甲基戊烷(2MP)和环己烷中的非极性生色团二苯基乙炔(DPA),获得了均匀的相移时间T-2。通过将总的两个脉冲四波混合信号的脉冲持续时间相关的共振增强与数值评估的理论进行比较来确定移相时间。数据是在300 nm(两种溶剂中DPA的电子起源)的80和400 fs变换限制脉冲下获取的。在DPA / 2MP中,T-2 = 120 fs,在DPA /环己烷中,T-2 = 500 Ps。该分析需要依赖于浓度和功率的测量来定量确定谐振。在仅非共振溶剂信号上方,由于向溶剂中添加了DPA而产生的信号增强。讨论了执行紫外飞秒两个脉冲光子回波所固有的基本实验困难,特别是与非谐振信号的竞争。描述了一种计算具有实际脉冲包络的光子回波衰减曲线的有效数值算法。 (C)1997美国物理研究所。 [参考:31]

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