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Multi-Scale DSA Simulations For Efficient Hotspot Analysis

机译:用于高效热点分析的多尺度DSA仿真

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In this study, we have investigated how to link "large-scale simulations with the simplified models" to "meso-scale simulations with the detailed models." For the simplified model, we have applied so-called the generalized Ohta-Kawasaki (gOK) model. Our simulation flow was implemented by two steps: 1) parallel computations of block copolymer annealing with the simplified model, 2) detailed analysis of the defects with the SCFT. The local volumetric densities of block copolymers calculated by the simplified models were used as an input for the SCFT. Then the SCFT simulations were performed under the constraints in which the density field was driven to be the one obtained from the simplified model. Using the resultant partition functions, we were able to obtain spatial distributions of the free chain ends and the connection points of the blocks. Note that the chain conformation of block copolymer is an important, but missing component of the simplified models; this multi-scale approach is expected to be useful for further understanding the origin and stability of DSA defects.
机译:在这项研究中,我们研究了如何将“具有简化模型的大规模仿真”与“具有详细模型的中尺度仿真”联系起来。对于简化模型,我们应用了所谓的广义Ohta-Kawasaki(gOK)模型。我们的仿真流程分为两个步骤:1)使用简化模型并行计算嵌段共聚物退火,2)使用SCFT对缺陷进行详细分析。通过简化模型计算得到的嵌段共聚物的局部体积密度用作SCFT的输入。然后,在密度场被驱动为简化模型的约束条件下,进行了SCFT仿真。使用所得的分区函数,我们能够获得自由链末端和嵌段连接点的空间分布。注意,嵌段共聚物的链构象是重要的,但是缺少简化模型的组成部分。预期这种多尺度方法将有助于进一步了解DSA缺陷的来源和稳定性。

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