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

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 interact...

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Veröffentlicht in:arXiv.org 2022-07
Hauptverfasser: Fromholz, Pierre, Tsitsishvili, Mikheil, Votto, Matteo, Dalmonte, Marcello, Nersesyan, Alexander, Chanda, Titas
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Tsitsishvili, Mikheil
Votto, Matteo
Dalmonte, Marcello
Nersesyan, Alexander
Chanda, Titas
description 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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subjects Bosons
Charge density waves
Clusters
Ladders
Liquid phases
Optical lattices
Phase diagrams
Physics - High Energy Physics - Theory
Physics - Quantum Gases
Physics - Quantum Physics
Physics - Statistical Mechanics
Physics - Strongly Correlated Electrons
Spin density waves
title Phase diagram of Rydberg-dressed atoms on two-leg triangular ladders
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