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Mean field theory of the swap Monte Carlo algorithm

机译:交换蒙特卡罗算法的平均场理论

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The swap Monte Carlo algorithm combines the translational motion with the exchange of particle species and is unprecedentedly efficient for some models of glass former. In order to clarify the physics underlying this acceleration, we study the problem within the mean field replica liquid theory. We extend the Gaussian Ansatz so as to take into account the exchange of particles of different species, and we calculate analytically the dynamical glass transition points corresponding to the swap and standard Monte Carlo algorithms. We show that the system evolved with the standard Monte Carlo algorithm exhibits the dynamical transition before that of the swap Monte Carlo algorithm. We also test the result by performing computer simulations of a binary mixture of the Mari-Kurchan model, both with standard and swap Monte Carlo. This scenario provides a possible explanation for the efficiency of the swap Monte Carlo algorithm. Finally, we discuss how the thermodynamic theory of the glass transition should be modified based on our results. Published by AIP Publishing.
机译:交换蒙特卡罗算法将平移运动与颗粒物种的交换相结合,对某些玻璃前的模型是前所未有的效率。为了澄清这种加速的物理学,我们研究了平均场复制液理论内的问题。我们因此延长了高斯拟设为考虑到不同种类的粒子的交流,我们计算分析相对应的交换和标准的蒙特卡洛算法的动态玻璃化转变点。我们表明,使用标准蒙特卡罗算法演变的系统在交换蒙特卡罗算法的情况下表现出动态转换。我们还通过对Mari-Kurchan模型的二进制混合物进行计算机模拟来测试结果,既与标准和交换蒙特卡洛一样。此方案提供了对交换Monte Carlo算法的效率的可能解释。最后,我们讨论了如何根据我们的结果修改玻璃过渡的热力学理论。通过AIP发布发布。

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