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On the correspondence between classical and quantum mechanics in macromolecular systems: Too much classical chaos

机译:关于大分子系统中经典力学和量子力学之间的对应关系:太多的经典混沌

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In a recent study we found the classical dynamics of a polyethylene (PE) chain to exhibit low dimensional chaos at temperatures as low as a few Kelvin. These results strongly suggest that classical molecular dynamic simulations in polymer systems can grossly overestimate vibrational motion, which consequently results in disordered structures. In contrast, quantum mechanical calculations using Internal Coordinate Quantum Monte Carlo (an improved method with an initial conjecture for the correct wave function) indicate that the quantum ground state for a three-dimensional model PE chain is far more rigid than determined from molecular dynamics (MD) simulations, even at energies as low as a small fraction of the ground state energy This result casts uncertainty on the reliability of MD estimates of dynamical or structural quanti ties relevant to the study of some macromolecular systems. [References: 30]
机译:在最近的一项研究中,我们发现聚乙烯(PE)链的经典动力学在低至几开氏温度的温度下表现出低维混沌。这些结果强烈表明,聚合物系统中的经典分子动力学模拟可能会严重高估振动运动,从而导致结构混乱。相比之下,使用内部坐标量子蒙特卡洛方法(具有正确波函数的初始猜想的改进方法)进行的量子力学计算表明,三维模型PE链的量子基态比从分子动力学确定的刚性要强得多( MD)模拟,甚至在低至基态能量的一小部分的能量下,该结果也对与某些大分子系统研究相关的动力学或结构量MD估计的可靠性产生了不确定性。 [参考:30]

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