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Phase transition in three-dimensional Heisenberg spin glasses with strong random anisotropies through a multi-GPU parallelization

机译:通过多GPU并行化实现具有强随机各向异性的三维Heisenberg自旋玻璃的相变

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摘要

We characterize the phase diagram of anisotropic Heisenberg spin glasses, finding both the spin and the chiral glass transition. We remark on the presence of strong finite-size effects in the chiral sector. On the spin glass sector, we find that the universality class is that of Ising spin glasses. Our data are compatible with a unique phase transition for the chiral and spin glass sector. We focus on keeping finite-size effects under control, and we stress that they are important to understand experiments. Thanks to large GPU clusters we have been able to thermalize cubic lattices with up to 643 spins, over a vast range of temperatures (hence, of relaxation times).
机译:我们表征各向异性海森堡自旋玻璃的相图,发现自旋和手性玻璃的转变。我们评论了在手性领域存在强大的有限尺寸效应。在旋转玻璃领域,我们发现通用性类别是Ising旋转玻璃。我们的数据与手性和旋转玻璃领域的独特相变兼容。我们专注于控制有限大小的效果,并强调它们对于理解实验很重要。多亏了大型GPU集群,我们才能够在很宽的温度范围内(因此具有弛豫时间)以多达643个自旋来加热立方晶格。

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