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What Do We Want From Computer Simulation Of Sims Using Clusters?

机译:我们希望从使用群集的模拟市民的计算机模拟中得到什么?

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Computer simulation of energetic cluster interactions with surfaces has provided much needed insight into some of the complex processes which occur and are responsible for the desirable as well as undesirable effects which make the use of clusters in SIMS both useful and challenging. Simulations have shown how cluster impacts can cause meso-scale motion of the target material which can result in the relatively gentle up-lift of large intact molecules adsorbed on the surface in contrast to the behaviour of single atom impacts which tend to create discrete motion in the surface often ejecting fragments of adsorbed molecules instead. With the insight provided from simulations experimentalists can then improve their equipment to best maximise the desired effects. The past 40 years has seen great progress in simulation techniques and computer equipment. 40 years ago simulations were performed on simple atomic systems of around 300 atoms employing only simple pair-wise interaction potentials to times of several hundred femtoseconds. Currently simulations can be performed on large organic materials employing many body potentials for millions of atoms for times of many picoseconds. These simulations, however, can take several months of computation time. Even with the degree of realism introduced with these long time simulations they are still not perfect are often not capable of being used in a completely predictive way. Computer simulation is reaching a position where by any more effort to increase its realism will make it completely intractable to solution in a reasonable time frame and yet there is an increasing demand from experimentalists for something that can help in a predictive way to help in experiment design and interpretation. This paper will discuss the problems of computer simulation and what might be possible to achieve in the short term, what is unlikely ever to be possible without a major new break through and how we might exploit the meso-scale effects in cluster impacts to simplify the simulations.
机译:计算机模拟的高能团簇与表面的相互作用提供了对一些复杂过程的迫切需要的洞察力,这些复杂过程的发生和造成了理想的和不利的影响,这些结果使在SIMS中使用集群既有用又具有挑战性。仿真表明,团簇撞击如何引起目标材料的中尺度运动,与单原子撞击的行为相反,后者会导致吸附在表面上的完整大分子相对温和地上升,而单原子撞击的行为往往会在其中产生离散运动。表面经常会弹出吸附分子的碎片。通过仿真提供的洞察力,实验人员可以改善设备,以最大程度地发挥所需的效果。在过去的40年中,模拟技术和计算机设备取得了长足的进步。 40年前,仅使用简单的成对相互作用电位(几百飞秒),对大约300个原子的简单原子系统进行了模拟。当前,可以对大型有机材料进行仿真,这些材料利用数百万个原子的许多体势,耗时数微微秒。但是,这些模拟可能要花费几个月的计算时间。即使通过这些长时间的仿真引入了逼真的程度,它们仍然不是完美的,通常也不能以完全可预测的方式使用。计算机仿真已经达到了一个可以通过更多努力来提高其逼真度的位置,这将使其在合理的时间内完全难以解决,但是实验人员对能够以预测性方式提供帮助以帮助进行实验设计的需求日益增长和解释。本文将讨论计算机仿真的问题,以及短期内可能实现的目标,如果没有重大的新突破,不可能实现的目标,以及如何利用集群影响中的中尺度效应来简化计算机模拟。模拟。

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