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Scattering off molecules far from equilibrium

机译:散射远离均衡的分子

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Pump-probe gas phase X-ray scattering experiments, enabled by the development of X-ray free electron lasers, have advanced to reveal scattering patterns of molecules far from their equilibrium geometry. While dynamic displacements reflecting the motion of wavepackets can probe deeply into the reaction dynamics, in many systems, the thermal excitation embedded in the molecules upon optical excitation and energy randomization can create systems that encompass structures far from the ground state geometry. For polyatomic molecular systems, large amplitude vibrational motions are associated with anharmonicity and shifts of interatomic distances, making analytical solutions using traditional harmonic approximations inapplicable. More generally, the interatomic distances in a polyatomic molecule are not independent and the traditional equations commonly used to interpret the data may give unphysical results. Here, we introduce a novel method based on molecular dynamic trajectories and illustrate it on two examples of hot, vibrating molecules at thermal equilibrium. When excited at 200 nm, 1,3-cyclohexadiene (CHD) relaxes on a subpicosecond time scale back to the reactant molecule, the dominant pathway, and to various forms of 1,3,5-hexatriene (HT). With internal energies of about 6 eV, the energy thermalizes quickly, leading to structure distributions that deviate significantly from their vibrationless equilibrium. The experimental and theoretical results are in excellent agreement and reveal that a significant contribution to the scattering signal arises from transition state structures near the inversion barrier of CHD. In HT, our analysis clarifies that previous inconsistent structural parameters determined by electron diffraction were artifacts that might have resulted from the use of inapplicable analytical equations. Published under license by AIP Publishing.
机译:泵探针气相X射线散射实验,通过开发X射线自由电子激光器,已经前进,揭示了远离其平衡几何形状的分子的散射模式。虽然反映波拔的动态位移可以深入地探测到反应动力学,但在许多系统中,在光学激发和能量随机化上嵌入分子中的热激励可以产生涵盖远离地态几何形状的结构。对于多原子分子系统,大振幅振动运动与交叉部距离的Anharmonicity和偏移相关,使用传统的谐波近似进行分析解决方案。更一般地,多原子分子中的内部距离不是独立的,并且通常用于解释数据的传统方程可以给出不存在的结果。在这里,我们介绍一种基于分子动态轨迹的新方法,并在热平衡下的两个热振动分子的两个例子上说明。当在200nm激发时,1,3-环己二烯(CHD)在亚磷第二次尺度上放松返回反应物分子,优势途径和各种形式的1,3,5-己二烯(HT)。随着约6eV的内部能量,能量快速热化,导致结构分布从无振动平衡中显着偏离。实验和理论结果符合很好的一致性,并揭示了对散射信号的显着贡献从CHD反转屏障附近的过渡状态结构产生。在HT中,我们的分析阐明了电子衍射确定的先前不一致的结构参数是可以通过使用不可应用的分析方程而导致的伪影。通过AIP发布在许可证下发布。

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