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Finite-temperature Wigner phase-space sampling and temperature effects on the excited-state dynamics of 2-nitronaphthalene

机译:有限温度的Wigner相空间取样和对2-硝基萘的兴奋状态动态的温度效应

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摘要

The concept of finite temperature Wigner phase-space sampling allowing the population of vibrationally excited states is introduced and employed to study temperature effects on the absorption spectrum of 2-nitronaphtalene (2NN) and its relaxation dynamics. It is found that, despite the fact that the general deactivation mechanism of 2NN after light irradiation does not change with increasing temperature, i.e., after excitation to the singlet manifold, 2NN deactivates via internal conversion in less than 100 fs and then undergoes intersystem crossing to the triplet manifold before decaying to the lowest triplet state in less than 150 fs, the intersystem crossing rate increases at higher temperatures. This increase is attributed to the appearance of a new deactivation pathway, which is not operative at lower temperatures. The present example illustrates that appropriate initial conditions beyond the idealized temperature of 0 K are indispensable to obtain reliable excited state mechanisms, which can be then related to experimental conditions.
机译:引入有限温度Wigner相空间采样的概念,允许振动激发态的群体,并用于研究对2-硝基到的吸收光谱(2NN)及其松弛动力学的吸收光谱。结果发现,尽管在光照射之后的2NN的一般失活机制不随温度的增加而变化,即在激发到单线歧管之后,2NN通过内部转换在小于100 fs的内部转换中停用,然后经历跨越的交叉在较少150 fs的衰减到最低三重态之前的三态歧管,在较高温度下的间隙交叉速率增加。这种增加归因于新的失活途径的外观,其在较低温度下不可操作。本示例说明,超出了0 k的理想温度的适当初始条件是必不可少的,以获得可靠的激发状态机制,其可以与实验条件相关。

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