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The Fluctuation-Dissipation Theorem of Colloidal Particle's energy on 2D Periodic Substrates:A Monte Carlo Study of thermal noise-like fluctuation and diffusion like Brownian motion

机译:胶体粒子能量对2D周期性底板的波动耗散定理:勃朗氏运动等热噪声波动和扩散的蒙特卡罗研究

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Using the Monte Carlo simulations, we have calculated mean-square fluctuations in statistical mechanics, such as those for colloids energy configuration are set on square 2D periodic substrates interacting via a long range screened Coulomb potential on any specific and fixed substrate. Random fluctuations with small deviations from the state of thermodynamic equilibrium arise from the granular structure of them and appear as thermal diffusion with Gaussian distribution structure as well. The variations are showing linear form of the Fluctuation-Dissipation Theorem on the energy of particles constitutive a canonical ensemble with continuous diffusion process of colloidal particle systems. The noise-like variation of the energy per particle and the order parameter versus the Brownian displacement of sum of large number of random steps of particles at low temperatures phase are presenting a markovian process on colloidal particles configuration, too.
机译:使用Monte Carlo模拟,我们已经计算了统计力学中的平均方波动,例如胶体能量配置的统计能量配置在正方形2D周期性基板上设定在任何特定和固定基板上的长距离屏蔽库仑电位相互作用。随着热力学平衡状态的随机波动来自它们的粒状结构,并且也与高斯分布结构的热扩散一样。变型在粒子颗粒系统的连续扩散过程中显示出对粒子组成型能量的波动耗散定理的线性形式。每个粒子的能量和顺序参数的噪声变化与低温下颗粒的大量随机步骤之和的朗安位移也在胶体颗粒构造上呈现Markovian方法。

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