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首页> 外文期刊>Journal of Statistical Physics >Exact Sampling of Self-avoiding Paths via Discrete Schramm-Loewner Evolution
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Exact Sampling of Self-avoiding Paths via Discrete Schramm-Loewner Evolution

机译:通过离散Schramm-Loewner演化对自我规避路径进行精确采样

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摘要

We present an algorithm, based on the iteration of conformal maps, that produces independent samples of self-avoiding paths in the plane. It is a discrete process approximating radial Schramm-Loewner evolution growing to infinity. We focus on the problem of reproducing the parametrization corresponding to that of lattice models, namely self-avoiding walks on the lattice, and we propose a strategy that gives rise to discrete paths where consecutive points lie an approximately constant distance apart from each other. This new method allows us to tackle two non-trivial features of self-avoiding walks that critically depend on the parametrization: the asphericity of a portion of chain and the correction-to-scaling exponent.
机译:我们基于共形图的迭代提出一种算法,该算法在平面中生成独立的自规避路径样本。这是一个离散过程,近似于径向Schramm-Loewner演化到无穷大。我们关注于再现与晶格模型相对应的参数化问题,即在晶格上的自动回避行走,并且我们提出了一种策略,该策略产生了离散的路径,其中连续的点彼此之间保持近似恒定的距离。这种新方法使我们能够解决两个主要取决于参数化的自避免行走的非平凡特征:部分链的非球面性和按比例缩放的校正。

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