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GPU-Accelerated Population Annealing Algorithm: Frustrated Ising Antiferromagnet on the Stacked Triangular Lattice

机译:GPU加速群体退火算法:堆积三角格上的令人沮丧的ising intifermagnet

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The population annealing algorithm is a novel approach to study systems with rough free-energy landscapes, such as spin glasses. It combines the power of simulated annealing, Boltzmann weighted differential reproduction and sequential Monte Carlo process to bring the population of replicas to the equilibrium even in the low-temperature region. Moreover, it provides a very good estimate of the free energy. The fact that population annealing algorithm is performed over a large number of replicas with many spin updates, makes it a good candidate for massive parallelism. We chose the GPU programming using a CUDA implementation to create a highly optimized simulation. It has been previously shown for the frustrated Ising antiferromagnet on the stacked triangular lattice with a ferromagnetic interlayer coupling, that standard Markov Chain Monte Carlo simulations fail to equilibrate at low temperatures due to the effect of kinetic freezing of the ferromagnetically ordered chains. We applied the population annealing to study the case with the isotropic intra- and interlayer antiferromagnetic coupling (J_2/|J_1|= -1). The reached ground states correspond to non-magnetic degenerate states, where chains are antiferromagnetically ordered, but there is no long-range ordering between them, which is analogical with Wannier phase of the 2D triangular Ising antiferromagnet.
机译:人口退火算法是一种研究具有粗糙能量景观的系统的新方法,例如旋转玻璃。它结合了模拟退火的功率,Boltzmann加权差分再现和顺序蒙特卡罗工艺,即使在低温区域中也能使复制群与平衡。此外,它提供了对自由能的非常好的估计。群体退火算法在具有许多具有许多自旋更新的大量复制品上进行的事实,使其成为巨大的并行性的良好候选者。我们使用CUDA实现选择了GPU编程来创建高度优化的模拟。先前已经示出了具有铁磁层间耦合的堆叠三角形格子上的令人沮丧的探测反晶片,因此标准马尔可夫链蒙特卡罗模拟由于动力磁性排序链的动力学冻结的效果而在低温下不能平衡。我们用各向同性和中间层反铁磁耦合(J_2 / | = -1)施加人口退火研究这种情况。到达地面状态对应于非磁性退化状态,其中链条是反式磁性排序的,但它们之间没有长范围的排序,这与2D三角形ising反霉菌的卫生阶段类似的多种序列。

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