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Interaction-dependent photon-assisted tunneling in optical lattices: a quantum simulator of strongly-correlated electrons and dynamical gauge fields

机译:光学晶格中依赖于相互作用的光子辅助隧道效应:强相关电子和动态规范场的量子模拟器

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摘要

We introduce a scheme that combines photon-assisted tunneling by a moving optical lattice with strong Hubbard interactions, and allows for the quantum simulation of paradigmatic quantum many-body models. We show that, in a certain regime, this quantum simulator yields an effective Hubbard Hamiltonian with tunable bond-charge interactions, a model studied in the context of strongly-correlated electrons. In a different regime, we show how to exploit a correlated destruction of tunneling to explore Nagaoka ferromagnetism at finite Hubbard repulsion. By changing the photon-assisted tunneling parameters, we can also obtain a t-J model with independently controllable tunneling t, super-exchange interaction J, and even a Heisenberg-Ising anisotropy. Hence, the full phase diagram of this paradigmatic model becomes accessible to cold-atom experiments, departing from the region t _ J allowed by standard single-band Hubbard Hamiltonians in the strong-repulsion limit. We finally show that, by generalizing the photon-assisted tunneling scheme, the quantum simulator yields models of dynamical Gauge fields, where atoms of a given electronic state dress the tunneling of the atoms with a different internal state, leading to Peierls phases that mimic a dynamical magnetic field.
机译:我们介绍了一种方案,该方案将移动的光学晶格的光子辅助隧穿与强大的哈伯德相互作用相结合,并允许对范式量子多体模型进行量子模拟。我们证明,在一定机制下,该量子模拟器产生具有可调键-电荷相互作用的有效哈伯哈密顿量,该模型是在强相关电子的上下文中研究的。在不同的状态下,我们展示了如何利用隧道的相关破坏来研究有限哈伯德斥力作用下的长冈铁磁性。通过更改光子辅助隧穿参数,我们还可以获得具有独立可控隧穿t,超交换相互作用J甚至是Heisenberg-Ising各向异性的t-J模型。因此,该范式模型的完整相图可用于冷原子实验,而在强斥力极限内则偏离标准单带哈伯德·哈密顿量所允许的区域t_J。最后,我们证明,通过推广光子辅助隧穿方案,量子模拟器会产生动态Gauge场的模型,其中给定电子态的原子穿行具有不同内部状态的原子的隧穿,从而导致模仿Peierls相的原子。动态磁场。

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