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首页> 外文期刊>The Journal of Chemical Physics >Absorption and emission lineshapes and solvation dynamics of NO in supercritical Ar
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Absorption and emission lineshapes and solvation dynamics of NO in supercritical Ar

机译:NO在超临界Ar中的吸收和发射线形及溶剂化动力学

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摘要

We perform a theoretical study of electronic spectroscopy of dilute NO in supercritical Ar fluid. Absorption and emission lineshapes for the A(2)Sigma(+)<- X-2 Pi Rydberg transition of NO in argon have been previously measured and simulated, which yielded results for the NO/Ar ground- and excited-state pair potentials [Larregaray , Chem. Phys. 308, 13 (2005)]. Using these potentials, we have performed molecular dynamics simulations and theoretical statistical mechanical calculations of absorption and emission lineshapes and nonequilibrium solvation correlation functions for a wide range of solvent densities and temperatures. Theory was shown to be in good agreement with simulation. Linear response treatment of solvation dynamics was shown to break down at near-critical temperature due to dramatic change in the solute-solvent microstructure upon solute excitation to the Rydberg state and the concomitant increase of the solute size. (c) 2008 American Institute of Physics.
机译:我们进行了电子光谱在超临界Ar流体中稀释NO的理论研究。先前已测量和模拟了氩气中NO的A(2)Sigma(+)<-X-2 Pi Rydberg跃迁的吸收和发射线形,得出了NO / Ar基态和激发态对电势的结果[ Larregaray,化学。物理308,13(2005)]。利用这些潜能,我们针对各种溶剂密度和温度进行了吸收和发射线形的分子动力学模拟和理论统计力学计算,以及非平衡溶剂化相关函数。理论证明与仿真非常吻合。由于在溶质激发到里德堡态时溶质-溶剂的微观结构发生了巨大变化,并且溶质尺寸随之增加,因此在接近临界温度的条件下,溶剂化动力学的线性响应处理会崩溃。 (c)2008年美国物理研究所。

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