论文标题

强烈相关的晶格偶极性玻色子的液液液

Superexchange Liquefaction of Strongly Correlated Lattice Dipolar Bosons

论文作者

Morera, Ivan, Ołdziejewski, Rafał, Astrakharchik, Grigori E., Juliá-Díaz, Bruno

论文摘要

我们提出了一种在密切相关的晶格系统中形成液体的机制。该机制基于远程吸引力和超级交换过程之间的相互作用。例如,我们研究一维光学晶格中的偶极玻色子。我们提出了一种扰动理论,并与完全密度 - 矩阵重新归一化组模拟进行了验证,以对系统不同阶段的能量和结构特性,即自我结合的莫特绝缘子,液体和气体进行验证。我们分析非平衡性能并计算动态结构因子。它的结构在可压缩和绝缘阶段有所不同。特别是,可压缩阶段中的低能激发是线性声子。我们提取声音的速度并分析其对偶极相互作用和密度的依赖性。我们表明,由于伽利略的破坏,它表现出非平凡的行为。我们认为,对这种以前未知的量子液体的实验检测可以提供甲图缩小过程的指纹,并为研究非加利利不变液体的开放式有趣的可能性提供了有趣的可能性。

We propose a mechanism for liquid formation in strongly correlated lattice systems. The mechanism is based on an interplay between long-range attraction and superexchange processes. As an example, we study dipolar bosons in one-dimensional optical lattices. We present a perturbative theory and validate it in comparison with full density-matrix renormalization group simulations for the energetic and structural properties of different phases of the system, i.e., self-bound Mott insulator, liquid, and gas. We analyze the nonequilibrium properties and calculate the dynamic structure factor. Its structure differs in compressible and insulating phases. In particular, the low-energy excitations in compressible phases are linear phonons. We extract the speed of sound and analyze its dependence on dipolar interaction and density. We show that it exhibits a nontrivial behaviour owing to the breaking of Galilean invariance. We argue that an experimental detection of this previously unknown quantum liquid could provide a fingerprint of the superexchange process and open intriguing possibilities for investigating non-Galilean invariant liquids.

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