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Energy transfer between a nanosystem and its host fluid: A multiscale factorization approach

机译:纳米系统与其主体流体之间的能量转移:一种多尺度分解方法

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Energy transfer between a macromolecule or supramolecular assembly and a host medium is considered from the perspective of Newton's equations and Lie-Trotter factorization. The development starts by demonstrating that the energy of the molecule evolves slowly relative to the time scale of atomic collisions-vibrations. The energy is envisioned to be a coarse-grained variable that coevolves with the rapidly fluctuating atomistic degrees of freedom. Lie-Trotter factorization is shown to be a natural framework for expressing this coevolution. A mathematical formalism and workflow for efficient multiscale simulation of energy transfer is presented. Lactoferrin and human papilloma virus capsid-like structure are used for validation.
机译:从牛顿方程和李-托特因式分解的角度考虑了大分子或超分子组装体与主体介质之间的能量转移。这种发展始于证明分子的能量相对于原子碰撞-振动的时间尺度缓慢发展。能量被设想为与快速波动的原子自由度共同演化的粗粒度变量。 Lie-Trotter分解被证明是表达这种共同进化的自然框架。提出了数学形式主义和工作流,用于能量转移的高效多尺度模拟。乳铁蛋白和人乳头瘤病毒衣壳样结构用于验证。

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