Insulator phases of Bose-Fermi mixtures induced by intraspecies next-neighbor interactions
- URL: http://arxiv.org/abs/2309.05594v2
- Date: Tue, 23 Jul 2024 02:36:05 GMT
- Title: Insulator phases of Bose-Fermi mixtures induced by intraspecies next-neighbor interactions
- Authors: F. Gómez-Lozada, R. Franco, J. Silva-Valencia,
- Abstract summary: We study a one-dimensional mixture of two-color fermions and scalar bosons at the hardcore limit.
We observed that the non-local interaction could favor or harm the well-known mixed Mott and spin-selective Mott insulators.
Our results can inspire or contribute to understanding experiments in cold-atom setups with long-range interactions or recent reports involving quasiparticles in semiconductor heterostructures.
- Score: 0.0
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: We study a one-dimensional mixture of two-color fermions and scalar bosons at the hardcore limit, focusing on the effect that the intraspecies next-neighbor interactions have on the zero-temperature ground state of the system for different fillings of each carrier. Exploring the problem's parameters, we observed that the non-local interaction could favor or harm the well-known mixed Mott and spin-selective Mott insulators. We also found the emergence of three unusual insulating states with charge density wave (CDW) structures in which the orders of the carriers are out of phase with each other. For instance, the immiscible CDW appears only at half-filling bosonic density, whereas the mixed CDW state is characterized by equal densities of bosons and fermions. Finally, the spin-selective CDW couples the bosons and only one kind of fermions. Appropriate order parameters were proposed for each phase to obtain the critical parameters for the corresponding superfluid-insulator transition. Our results can inspire or contribute to understanding experiments in cold-atom setups with long-range interactions or recent reports involving quasiparticles in semiconductor heterostructures.
Related papers
- Exploring phonon-like interactions in one-dimensional Bose-Fermi
mixtures [0.0]
We investigate a cold atomic Bose-Fermi mixture confined in an optical lattice potential solely affecting the bosons.
Under attractive Bose-Fermi interaction, the insulating phase may adopt a fermionic wedding-cake-like configuration.
For repulsive interaction, the trap destabilizes the Peierls phase, causing the two species to separate.
arXiv Detail & Related papers (2023-03-13T13:08:02Z) - Phase diagram of Rydberg-dressed atoms on two-leg triangular ladders [50.591267188664666]
We investigate the phase diagram of hard-core bosons in a triangular ladder with next-to-nearest-neighbor interaction along each leg.
For weak interactions, Abelian bosonization predicts a spin density wave and a fully gapless Luttinger liquid phase.
The competition with the zigzag interaction generates a charge density wave, a 'polarized holonic' phase, and a crystalline phase at the filling 2/5.
arXiv Detail & Related papers (2022-07-01T12:49:04Z) - Tuning long-range fermion-mediated interactions in cold-atom quantum
simulators [68.8204255655161]
Engineering long-range interactions in cold-atom quantum simulators can lead to exotic quantum many-body behavior.
Here, we propose several tuning knobs, accessible in current experimental platforms, that allow to further control the range and shape of the mediated interactions.
arXiv Detail & Related papers (2022-03-31T13:32:12Z) - Accessing the topological Mott insulator in cold atom quantum simulators
with realistic Rydberg dressing [58.720142291102135]
We investigate a realistic scenario for the quantum simulation of such systems using cold Rydberg-dressed atoms in optical lattices.
We perform a detailed analysis of the phase diagram at half- and incommensurate fillings, in the mean-field approximation.
We furthermore study the stability of the phases with respect to temperature within the mean-field approximation.
arXiv Detail & Related papers (2022-03-28T14:55:28Z) - Lieb-Robinson bounds and growth of correlations in Bose mixtures [77.34726150561087]
For a mixture of interacting Bose gases initially prepared in a regime of condensation (uncorrelation) it is proved that in the course of the time evolution observables of disjoint sets of particles of each species have correlation functions that remainally small in the total number of particles and display a controlled growth in time.
arXiv Detail & Related papers (2021-10-30T19:23:42Z) - Quantum correlations, entanglement spectrum and coherence of
two-particle reduced density matrix in the Extended Hubbard Model [62.997667081978825]
We study the ground state properties of the one-dimensional extended Hubbard model at half-filling.
In particular, in the superconducting region, we obtain that the entanglement spectrum signals a transition between a dominant singlet (SS) to triplet (TS) pairing ordering in the system.
arXiv Detail & Related papers (2021-10-29T21:02:24Z) - Quantum Coherent States of Interacting Bose-Fermi Mixtures in One
Dimension [68.8204255655161]
We study two-component atomic gas mixtures in one dimension involving both bosons and fermions.
We report a rich variety of coherent ground-state phases that vary with the intrinsic and relative strength of the interactions.
arXiv Detail & Related papers (2021-10-26T17:52:37Z) - Phase diagram of the SU$(3)$ Fermi-Hubbard model with next-neighbor
interactions [0.0]
We explore the zero-temperature phase diagram of a one-dimensional gas composed of three-color fermions, which interact locally and with their next neighbors.
Using the density matrix renormalization group method and considering one-third filling, we characterize the ground state for several values of the parameters.
We show that the von Neumann block entropy and the fidelity susceptibility are useful for estimating the borders between the phases.
arXiv Detail & Related papers (2020-04-22T03:47:07Z) - Mixture of scalar bosons and two-color fermions in one dimension:
Superfluid-insulator transitions [0.0]
Superfluid-insulator transitions are studied within the framework of the Bose-Fermi-Hubbard model.
New non-trivial insulator phases depend on the sign of the boson-fermion interaction.
Findings could be observed experimentally in state-of-the-art cold-atom setups.
arXiv Detail & Related papers (2020-03-19T23:12:10Z) - Two-body repulsive bound pairs in multi-body interacting Bose-Hubbard
model [0.0]
We study the system of multi-body interacting bosons on a two dimensional optical lattice.
We analyze the formation of bound bosonic pairs in the context of the Bose-Hubbard model.
arXiv Detail & Related papers (2020-02-26T06:21:49Z) - Realization of a density-dependent Peierls phase in a synthetic,
spin-orbit coupled Rydberg system [0.13107669223114085]
We experimentally realize a Peierls phase in the hopping amplitude of excitations carried by Rydberg atoms.
We observe the resulting characteristic chiral motion in a minimal setup of three sites.
arXiv Detail & Related papers (2020-01-28T14:29:40Z)
This list is automatically generated from the titles and abstracts of the papers in this site.
This site does not guarantee the quality of this site (including all information) and is not responsible for any consequences.