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Quantum Monte Carlo study of the visibility of one-dimensional Bose-Fermi mixtures

机译:一维Bose-Fermi混合物能见度的量子蒙特卡洛研究

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摘要

The study of ultracold optically trapped atoms has opened new vistas in the physics of correlated quantum systems. Much attention has now turned to mixtures of bosonic and fermionic atoms. A central puzzle is the disagreement between the experimental observation of a reduced bosonic visibility V(b), and quantum Monte Carlo (QMC) calculations which show V(b) increasing. In this paper, we present QMC simulations which evaluate the density profiles and V(b) of mixtures of bosons and fermions in one-dimensional optical lattices. We resolve the discrepancy between theory and experiment by identifying parameter regimes where V(b) is reduced, and where it is increased. We present a simple qualitative picture of the different response to the fermion admixture in terms of the superfluid and Mott-insulating domains before and after the fermions are included. Finally, we show that V(b) exhibits kinks which are tied to the domain evolution present in the pure case, and also additional structure arising from the formation of boson-fermion molecules, a prediction for future experiments.
机译:超冷光学捕获原子的研究为相关量子系统的物理学打开了新的视野。现在,许多注意力转向了硼原子和铁离子原子的混合物。一个主要的难题是,对降低的玻色能见度V(b)的实验观察与表明V(b)增大的量子蒙特卡洛(QMC)计算之间存在分歧。在本文中,我们提出了QMC模拟,用于评估一维光学晶格中玻色子和费米子混合物的密度分布和V(b)。我们通过确定V(b)减小和增大的参数范围来解决理论与实验之间的差异。我们提供了一个简单的定性图片,说明了在包括费米子之前和之后,超流体和莫特绝缘域对费米子混合物的不同反应。最后,我们表明V(b)表现出与纯情况下域演化有关的纽结,以及由于玻色子-费米子分子形成而产生的其他结构,这是对未来实验的预测。

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