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Cooperative behavior in driven lattice systems with shifted periodic boundary conditions.

机译:具有周期性周期边界条件变化的驱动晶格系统中的合作行为。

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摘要

We explore the nature of driven stochastic lattice systems with non-periodic boundary conditions. The systems consist of particle and holes which move by exchanges of nearest neighbor particle-hole pairs. These exchanges are controlled by the energetics associated with an internal Hamiltonian, an external drive and a stochastic coupling to a heat reservoir. The effect of the drive is to bias particle-hole exchanges along the field in such a way that a particle current can be established. Hard-core volume constraints limit the occupation of only one particle (hole) per lattice site. For certain regimes of the overall particle density and temperature, a system displays a homogeneous disordered phase. We investigate cooperative behavior in this phase by using two-point spatial correlation functions and structure factors. By varying the particle density and the temperature, the system orders into a phase separated state, consisting of particle-rich and particle-poor regions. The temperature and density for the co-existence state depend on the boundary conditions. By using Monte Carlo simulations, we establish co-existence curves for systems with shifted periodic boundary conditions.
机译:我们探索具有非周期边界条件的驱动随机晶格系统的性质。该系统由粒子和空穴组成,这些粒子和空穴通过最邻近粒子对的交换而移动。这些交换由与内部哈密顿量,外部驱动器以及与储热器的随机耦合相关的能量控制。驱动的作用是以这种方式偏置沿着磁场的粒子-空穴交换,使得可以建立粒子电流。硬核体积限制限制了每个晶格位置仅占用一个粒子(孔)。对于总粒子密度和温度的某些状态,系统显示均匀的无序相。我们通过使用两点空间相关函数和结构因子来调查此阶段的合作行为。通过改变粒子的密度和温度,该系统将进入一个相分离状态,由富粒子区域和贫粒子区域组成。共存状态的温度和密度取决于边界条件。通过使用蒙特卡洛模拟,我们为周期边界条件发生变化的系统建立了共存曲线。

著录项

  • 作者

    Anderson, Mark Jule.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 112 p.
  • 总页数 112
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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