使用复合原子-离子系统的扩展极化子模型的量子模拟

K. Jachymski, A. Negretti
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引用次数: 5

摘要

我们考虑了使用捕获激光冷却离子与超冷原子气体相互作用的混合平台对具有强电子-声子耦合的凝聚态模型进行量子模拟的前景。该系统自然具有声子结构,与通常使用超冷原子的标准光学晶格方案相反,其中晶格是由激光产生的,因此它保持静态。我们推导了描述一般系统的有效哈密顿量,并讨论了产生的能量尺度,将结果与常用的扩展hubard - holstein模型联系起来。虽然对于一个典型的实验现实系统,声子的耦合是很小的,但我们提供了增强其作用的方法,并达到了具有竞争阶的有趣状态。扩展的Lang-Firsov变换揭示了原子之间声子诱导的远程相互作用的出现,这种相互作用可以产生低有效质量的局域和扩展双极化子态,表明费米子配对的可能性。
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Quantum simulation of extended polaron models using compound atom-ion systems
We consider the prospects for quantum simulation of condensed matter models exhibiting strong electron-phonon coupling using a hybrid platform of trapped laser-cooled ions interacting with an ultracold atomic gas. This system naturally posesses a phonon structure, in contrast to the standard optical lattice scenarios usually employed with ultracold atoms in which the lattice is generated by laser light and thus it remains static. We derive the effective Hamiltonian describing the general system and discuss the arising energy scales, relating the results to commonly employed extended Hubbard-Holstein models. Although for a typical experimentally realistic system the coupling to phonons turns out to be small, we provide the means to enhance its role and reach interesting regimes with competing orders. Extended Lang-Firsov transformation reveals the emergence of phonon-induced long-range interactions between the atoms, which can give rise to both localized and extended bipolaron states with low effective mass, indicating the possibility of fermion pairing.
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