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Self-organization of confined dipolar particles in a parallel field

机译:平行场中受限偶极子粒子的自组织

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摘要

Monte Carlo simulations of a Stockmayer fluid confined between two parallel walls are performedto investigate self-organization of magnetic nanocrystals in a field parallel to the walls as a function of density, field strength, and wall separation. In order to study the formation of mesoscopicstructures, a large number of up to 12 000 particles have to be used. The particles organize into periodically spaced cylindrical-like columns whose width typically varies between 5 and 9 particlediameters at low density. At small heights the columns are quenched due to the parallel walls, while larger wall separations can accommodate several layers of columns in good agreement withexperiments. An increase in density entails a clear increase in column thickness, whereas an increase in field strength seems to have the opposite effect.
机译:进行了封闭在两个平行壁之间的Stockmayer流体的蒙特卡罗模拟,以研究磁性纳米晶体在与壁平行的场中作为密度,场强和壁分离的函数的自组织。为了研究介观结构的形成,必须使用多达12 000个粒子。颗粒组织成周期性间隔的圆柱状圆柱,其宽度在低密度下通常在5到9个粒径之间变化。在较小的高度下,由于平行的壁而使柱淬火,而较大的壁间距可以容纳与实验良好吻合的多层柱。密度的增加必然会使柱厚明显增加,而场强的增加似乎具有相反的效果。

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