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Integrating ultrafast and stochastic dynamics studies of Brownian motion in molecular systems and colloidal particles

机译:集成超快和随机动力学研究的褐色运动中的分子系统和胶体粒子

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Ultrafast spectroscopy and stochastic dynamics studies of chemical dynamics in solution with high resolution in both space and time have been undertaken for many years, but it is still challenging to connect fundamental knowledge obtained from stroboscopic approaches at ultrashort timescales and small length scales with that obtained by directly measuring individual particle motion at longer timescales. Therefore, it is interesting, conceptually and experimentally, to understand the similarities and differences between these two approaches to the study of chemical dynamics in condensed phase systems. We discuss recent advances in the understanding of the transition from ballistic to diffusive motion and chemical reaction rate theories and describe the significance of the findings in relation to the study of thermally activated processes at multiple time and length scales.
机译:在两个空间和时间内具有高分辨率的溶液中的超快速光谱和随机动力学研究多年来已经进行了多年,但是在超短时间尺度和通过 直接测量更长的时间尺寸粒子运动。 因此,概念上和实验,了解这两种方法与化学动力学研究的相似性和差异在冷凝相位系统中的研究。 我们讨论最近对从群体转变为扩散运动和化学反应率理论的转变的进步,并描述了在多次和长度尺度的多个时间和长度的研究中研究了结果的重要性。

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