论文标题

rydberg的相图在两腿三角梯子上

Phase diagram of Rydberg-dressed atoms on two-leg triangular ladders

论文作者

Fromholz, Pierre, Tsitsishvili, Mikheil, Votto, Matteo, Dalmonte, Marcello, Nersesyan, Alexander, Chanda, Titas

论文摘要

光学晶格中的穿着的rydberg原子是一个有前途的平台,用于在牢固相互作用的系统中出现有趣现象的量子模拟。与这种设置相关,我们研究了三角梯子中硬核玻色子的相图,沿着每条腿近乎最邻居的互动,而最接近的邻居相互作用,而又不在双腿之间跳跃。对于弱相互作用,Abelian实易预测旋转密度波和完全无间隙的Luttinger液相。这种液体在沿着每条腿的强相互作用的“自旋锁定”簇luttinger液体过渡,如簇隆的预测。有趣的是,与锯齿形相互作用的竞争会产生电荷密度波,“偏振度荷兰”相以及在填充2/5处的晶相,我们通过半经典的扰动方法来解决。精确的对角度化和密度基质重新归一化组模拟证实了这些相位及其过渡的预测并进一步表征。

Dressed Rydberg atoms in optical lattices are a promising platform for the quantum simulation of intriguing phenomena emerging in strongly interacting systems. Relevant to such a setup, we investigate the phase diagram of hard-core bosons in a triangular ladder with next-to-nearest-neighbor interaction along each leg and nearest-neighbors interactions without hopping between the legs. For weak interactions, Abelian bosonization predicts a spin density wave and a fully gapless Luttinger liquid phase. Such liquids transition to a 'spin-locked' cluster Luttinger liquid at strong interactions along each leg, as predicted by cluster bosonization. Interestingly, the competition with the zigzag interaction generates a charge density wave, a 'polarized holonic' phase, and a crystalline phase at the filling 2/5, that we address via semi-classical perturbative approach. Exact diagonalization and density matrix renormalization group simulations confirm the predictions and further characterize the phases and their transitions.

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