He Guang S, Lin Tzu-Chau, Dai Jianming, Prasad Paras N, Kannan Ramamurthi, Dombroskie Ann G, Vaia Richard A, Tan Loon-Seng
Institute for Lasers, Photonics and Biophotonics, State University of New York at Buffalo, Buffalo, New York 14260-3000, USA.
J Chem Phys. 2004 Mar 15;120(11):5275-84. doi: 10.1063/1.1647537.
Degenerate two-photon absorption (TPA) spectral properties of five AFX chromophore solutions have been studied using a single and spectrally dispersed sub-picosecond white-light continuum beam. In a specially designed optical configuration, optical pathways inside the sample solution for different spectral components of the focused continuum beam were spatially separated from each other. Thus, the nondegenerate TPA processes coming from different spectral components can be eliminated, and the direct nonlinear absorption spectrum attributed to degenerate TPA processes can be readily obtained. Using this new technique, the complete TPA spectra for these five highly two-photon-active compounds (AF-380, AF-350, AF-295, AF-270, and AF-50) were obtained in the spectral range from 600 to 950 nm on an absolute scale of TPA cross section. The relationship between the molecular structures and their TPA spectral behaviors are discussed. In general the measured TPA spectra are not identical with the linear absorption spectra on the scale of absorbed photon(s) energy. Moreover, for some sample (such as AF-380), the TPA spectrum is totally different from the linear spectrum, which implies the difference of molecular transition pathways and selection rules for one- and two-photon excitation processes. At high excitation intensity levels (>or=15 GW/cm(2)), the saturation behavior of TPA transition can be observed obviously in AF-350 and AF-380 solutions that exhibit much higher nonlinear absorptivity than the other chromophores investigated.
利用单束且经光谱色散的亚皮秒白光连续谱光束,研究了五种AFX发色团溶液的简并双光子吸收(TPA)光谱特性。在一种特殊设计的光学配置中,聚焦连续谱光束不同光谱成分在样品溶液中的光程在空间上相互分离。因此,可以消除来自不同光谱成分的非简并TPA过程,并且能够容易地获得归因于简并TPA过程的直接非线性吸收光谱。使用这种新技术,在600至950nm光谱范围内,以TPA截面的绝对尺度获得了这五种高二光子活性化合物(AF - 380、AF - 350、AF - 295、AF - 270和AF - 50)的完整TPA光谱。讨论了分子结构与其TPA光谱行为之间的关系。一般来说,在吸收光子能量尺度上,测得的TPA光谱与线性吸收光谱并不相同。此外,对于某些样品(如AF - 380),TPA光谱与线性光谱完全不同,这意味着单光子和双光子激发过程的分子跃迁途径和选择规则存在差异。在高激发强度水平(≥15 GW/cm²)下,在AF - 350和AF - 380溶液中可以明显观察到TPA跃迁的饱和行为,这两种溶液表现出比所研究的其他发色团更高的非线性吸收率。