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Critical exponents of the disorder-driven superfluid-insulator transition in one-dimensional Bose-Einstein condensates

机译:一维玻色-爱因斯坦凝聚物中无序驱动的超流体-绝缘体转变的临界指数

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摘要

We investigate the nature of the superfluid-insulator quantum phase transition driven by disorder for noninteracting ultracold atoms on one-dimensional lattices. We consider two different cases: Anderson-type disorder, with local energies randomly distributed, and pseudodisorder due to a potential incommensurate with the lattice, which is usually called the Aubry-Andre model. A scaling analysis of numerical data for the superfluid fraction for different lattice sizes allows us to determine quantum critical exponents characterizing the disorder-driven superfluid-insulator transition. We also briefly discuss the effect of interactions close to the noninteracting quantum critical point of the Aubry-Andre model.
机译:我们研究了一维晶格上非相互作用超冷原子的无序驱动的超流体-绝缘子量子相变的性质。我们考虑两种不同的情况:局部能量随机分布的安德森型障碍,以及由于与晶格不相称的电势而导致的伪紊乱,通常称为Aubry-Andre模型。对不同晶格大小的超流体分数的数值数据进行比例分析,使我们能够确定表征无序驱动的超流体-绝缘体转变的量子临界指数。我们还简要地讨论了接近Aubry-Andre模型的非相互作用量子临界点的相互作用的影响。

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