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Quantum phases of one-dimensional Hubbard models with three- and four-body couplings

机译:具有三体和四体耦合的一维Hubbard模型的量子相

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摘要

The experimental advances in cold atomic and molecular gases stimulate the investigation of lattice correlated systems beyond the conventional on-site Hubbard approximation, by possibly including multiparticle processes. We study fermionic extended Hubbard models in a one-dimensional lattice with different types of particle couplings, including also three- and four-body interactions up to nearest neighboring sites. By using the bosonization technique, we investigate the low-energy regime and determine the conditions for the appearance of ordered phases, for arbitrary particle filling. We find that three- and four-body couplings may significantly modify the phase diagram. In particular, diagonal three-body terms that directly couple the local particle densities have qualitatively different effects from off-diagonal three-body couplings originating from correlated hopping, and favor the appearance of a Luther-Emery phase even when two-body terms are repulsive. Furthermore, the four-body coupling gives rise to a rich phase diagram and may lead to the realization of the Haldane insulator phase at half-filling.
机译:冷原子和分子气体的实验进展推动了对晶格相关系统的研究,超越了常规的现场哈伯德逼近,可能包括多粒子过程。我们在具有不同类型的粒子耦合的一维晶格中研究费米离子扩展的Hubbard模型,包括三体和四体相互作用,直至最近的相邻位点。通过使用玻化技术,我们研究了低能状态,并确定了用于任意颗粒填充的有序相出现的条件。我们发现三体和四体耦合可能会大大改变相图。特别是,直接耦合局部粒子密度的对角三体项与源自相关跳跃的非对角三体耦合在质量上有不同的影响,并且即使两体项相互排斥,也倾向于出现路德-埃默里相。 。此外,四体耦合产生丰富的相图,并可能导致在半填充时实现霍尔丹绝缘子相。

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  • 来源
    《Physical review》 |2013年第11期|115115.1-115115.11|共11页
  • 作者单位

    Dipartimento di Scienza Applicata e Tecnologia del Politecnico di Torino corso Duca degli Abruzzi 24,10129 Torino, Italy CNR-SPIN, 1-80126 Napoli, Italy;

    Dipartimento di Scienza Applicata e Tecnologia del Politecnico di Torino corso Duca degli Abruzzi 24,10129 Torino, Italy;

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  • 正文语种 eng
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  • 关键词

    lattice fermion models (hubbard model, etc.);

    机译:格子费米子模型(哈伯德模型等);

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