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Combining pressure and temperature control in dynamics on energy landscapes

机译:将压力和温度控制在能量景观中的动态中

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摘要

Complex systems from science, technology or mathematics usually appear to be very different in their specific dynamical evolution. However, the concept of an energy landscape with its basins corresponding to locally ergodic regions separated by energy barriers provides a unifying approach to the description of complex systems dynamics. In such systems one is often confronted with the task to control the dynamics such that a certain basin is reached with the highest possible probability. Typically one aims for the global minimum, e.g. when dealing with global optimization problems, but frequently other local minima such as the metastable compounds in materials science are of primary interest. Here we show how this task can be solved by applying control theory using magnesium fluoride as an example system, where different modifications of MgF2 are considered as targets. In particular, we generalize previous work restricted to temperature controls only and present controls which simultaneously adjust temperature and pressure in an optimal fashion.
机译:来自科学,技术或数学的复杂系统通常在其特定的动态演进中似乎非常不同。然而,与由能量屏障分离的局部遍历区域的盆地的能量景观的概念提供了统一的方法,以便对复杂系统动态的描述提供统一的方法。在这样的系统中,一个人经常面对控制动态的任务,使得某个盆地被达到最高可能的概率。通常一个目标是全球最低限度,例如,在处理全球优化问题时,频繁的其他局部最小值如材料科学中的亚稳化合物是主要的兴趣。在这里,我们示出了如何通过使用氟化镁作为示例性系统应用控制理论来解决该任务,其中MGF2的不同修饰被认为是靶标。特别是,我们概括了以前的工作仅限于温度控制,并且目前的控制,同时调整温度和压力以最佳的方式。

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