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A Theoretical Study of One- and Two-Photon Activity of D-Luciferin

机译:D-萤光素的一光子和二光子活性的理论研究

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In the present work, we have theoretically studied the one and two-photon absorption (OPA and TPA) probabilities of the native D-luciferin molecule and attempted to find the origin of its larger TPA cross-sections in polar solvents than in non-polar ones. The calculations using state-of-the-art linear and quadratic response theory in the framework of time-dependent density functional theory using hybrid B3LYP functional and cc-pVDZ basis set suggests that two-photon transition probability of this molecule increases with increasing solvent polarity. In order to explicate our present findings, we employed the generalized few-state-model and inspected the role of different optical channels related to the TPA process. We have found that the two-photon transition probability is always guided by a destructive interference term, the magnitude of which decreases with increasing solvent polarity. Furthermore, we have evaluated OPA parameters of D-luciferin and noticed that the the excitation energy is in very good agreement with the available experimental results.
机译:在目前的工作中,我们从理论上研究了天然D-萤光素分子的一光子吸收和两光子吸收(OPA和TPA)概率,并试图寻找极性溶剂中比非极性分子更大的TPA横截面的起源。那些。使用最新的线性和二次响应理论,在时变密度泛函理论框架下,使用混合B3LYP泛函和cc-pVDZ基集进行的计算表明,该分子的双光子跃迁几率随着溶剂极性的增加而增加。为了阐明我们目前的发现,我们采用了广义的少数状态模型并检查了与TPA过程相关的不同光通道的作用。我们发现,双光子跃迁几率始终由相消干涉项决定,相干干涉的幅度随着溶剂极性的增加而降低。此外,我们评估了D-萤光素的OPA参数,并注意到激发能与可用的实验结果非常吻合。

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