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Studying the low-entropy Mott transition of bosons in a three-dimensional optical lattice by measuring the full momentum-space density

机译:通过测量全动量空间密度研究三维光晶格中玻色子的低熵莫特跃迁

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We report on a combined experimental and theoretical study of the low-entropy Mott transition for interacting bosons trapped in a three-dimensional (3D) cubic lattice; namely, the interaction-induced superfluid-to-normal phase transition in the vicinity of the zero-temperature Mott transition. Our analysis relies on the measurement of the 3D momentum distribution, which allows us to extract the momentum-space density ρ(k = 0) at the center of the Brillouin zone. Upon varying the ratio between the interaction U and the tunneling energy J across the superfluid transition, we observe that ρ(k = 0) exhibits a sharp transition at a value of U/J consistent with the bulk prediction from quantum Monte Carlo. In addition, the variation of ρ(k = 0) with U/J exhibits a critical behavior consistent with the expected 3D XY universality class. Our results show that the tomographic reconstruction of the momentum distribution of ultracold bosons can reveal traits of the critical behavior of the superfluid transition even in an inhomogeneous trapped system.
机译:我们报告了被困在三维 (3D) 立方晶格中的相互作用玻色子的低熵 Mott 跃迁的实验和理论相结合的研究;即,在零温度莫特转变附近,相互作用诱导的超流体到法相相变。我们的分析依赖于对 3D 动量分布的测量,这使我们能够提取布里渊区中心的动量空间密度 ρ(k = 0)。在改变超流体跃迁过程中相互作用 U 与隧穿能 J 之间的比率时,我们观察到 ρ(k = 0) 在 U/J 值处表现出急剧跃迁,这与量子蒙特卡洛的体预测一致。此外,ρ(k = 0) 随 U/J 的变化表现出与预期的 3D XY 普遍性等级一致的临界行为。我们的研究结果表明,即使在不均匀的圈积系统中,超冷玻色子动量分布的断层重建也可以揭示超流体跃迁临界行为的特征。

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