论文标题

平面lieb晶格中强烈相互作用的玻色子的激发光谱

Excitation spectra of strongly interacting bosons in the flat-band Lieb lattice

论文作者

Grygiel, Barbara, Patucha, Konrad

论文摘要

平面频带系统中的强相关玻色子是研究各种量子现象的绝佳平台。这样的系统可以在充满超速原子气体的光学晶格中实现。在本文中,我们通过时间依赖性的Gutzwiller平均场方法研究Lieb晶格中的Bose-Hubbard模型。我们发现,在莫特绝缘体阶段,激发模式被张开并纯粹显示粒子或纯孔特性,而在超流相阶段,激发光谱是无间隙的。 Lieb晶格的几何形状导致基态下的不均匀顺序参数和不均匀的振荡能。这会导致激发光谱中的分散带之间的其他抗横断,而平面频段对此效果仍然不敏感。我们分析了sublattices上的顺序参数的振荡以及激发的粒子孔特征。对于某些模型参数,我们在同一模式下发现同时纯相和纯振幅振荡,在sublattices之间分开。另外,我们提出了一种简单的方法,可以通过对sublattices的原子种群的原位测量来区分Lieb晶格中的孔和粒子超流体区域。

The strongly correlated bosons in flat band systems are an excellent platform to study a wide range of quantum phenomena. Such systems can be realized in optical lattices filled with ultracold atomic gases. In this paper we study the Bose-Hubbard model in the Lieb lattice by means of the time-dependent Gutzwiller mean-field approach. We find that in the Mott insulator phase the excitation modes are gapped and display purely particle or purely hole character, while in the superfluid phase the excitation spectrum is gapless. The geometry of the Lieb lattice leads to a non-uniform order parameter and non-uniform oscillation energy in the ground state. This results in additional anti-crossings between dispersive bands in the excitation spectra, while the flat bands remain insensitive to this effect. We analyze the oscillations of the order parameter on the sublattices as well as the particle-hole character of the excitations. For certain model parameters we find simultaneous pure phase and pure amplitude oscillations within the same mode, separated between the sublattices. Also, we propose a simple method to differentiate between the hole- and particle superfluid regions in the Lieb lattice by in-situ measurement of the atom population on the sublattices.

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