Edge modes and boundary impurities in the anisotropic Heisenberg spin chain
- URL: http://arxiv.org/abs/2412.00194v1
- Date: Fri, 29 Nov 2024 19:00:06 GMT
- Title: Edge modes and boundary impurities in the anisotropic Heisenberg spin chain
- Authors: Pradip Kattel, Parameshwar R. Pasnoori, J. H. Pixley, Natan Andrei,
- Abstract summary: We study the interplay between fractionalized spin-$frac12$ edge modes and a coupled spin-$frac12$ impurity at the edge.
Our findings highlight the nuanced behavior of boundary impurities in gapped antiferromagnetic systems.
- Score: 0.0
- License:
- Abstract: We present a comprehensive analysis of boundary phenomena in a spin-$\frac{1}{2}$ anisotropic Heisenberg chain (XXZ-$\frac{1}{2}$) in the gapped antiferromagnetic phase, with a particular focus on the interplay between fractionalized spin-$\frac{1}{4} $ edge modes and a coupled spin-$\frac{1}{2}$ impurity at the edge. Employing a combination of Bethe Ansatz, exact diagonalization, and density matrix renormalization group (DMRG) methods, we explore the intricate phase diagram that emerges when the impurity is coupled either integrably or non-integrably to the chain. For integrable antiferromagnetic impurity couplings, we identify two distinct phases: the Kondo phase, where the impurity is screened by a multiparticle Kondo effect, and the antiferromagnetic bound mode phase, where an exponentially localized bound state screens the impurity in the ground state. When coupled ferromagnetically while maintaining integrability, the impurity behaves as a free spin-$\frac{1}{2}$, leading to either a ferromagnetic bound mode phase, where the impurity remains free in the ground state but may be screened at higher energy excitations or an unscreened (or local moment) phase where impurity remains unscreened in every eigenstate whereas for non-integrable ferromagnetic coupling, the impurity is not free. In the case of non-integrable antiferromagnetic coupling, a third phase emerges, characterized by mid-gap excitations with two degenerate states below the mass gap on top of the Kondo and antiferromagnetic bound mode phases, further enriching the phase diagram. Our findings highlight the nuanced behavior of boundary impurities in gapped antiferromagnetic systems, offering new insights into Kondo effects and impurity screening in the presence of fractionalized edge modes and bulk antiferromagnetic order.
Related papers
- Exploiting the presence of chiral spin states in molecular nanomagnets [47.41699406259656]
In a three-spin-center system, antiferromagnetic exchange interactions give rise to two ground-state doublets.
We explore the presence of spin-chirality in Lanthanide complexes that feature two magnetic centers.
arXiv Detail & Related papers (2025-01-21T08:23:12Z) - Long-range interactions in Weyl dense atomic arrays protected from dissipation and disorder [41.94295877935867]
Long-range interactions are a key resource in many quantum phenomena and technologies.
We show how to design the polaritonic bands of these atomic metamaterials to feature a pair of frequency-isolated Weyl points.
These Weyl excitations can thus mediate interactions that are simultaneously long-range, due to their gapless nature; robust, due to the topological protection of Weyl points; and decoherence-free, due to their subradiant character.
arXiv Detail & Related papers (2024-06-18T20:15:16Z) - Kondo effect in the isotropic Heisenberg spin chain [0.0]
impurity coupling strength is much weaker than that in the bulk, the impurity is screened in the ground state via the Kondo effect.
When the impurity coupling is ferromagnetic, the impurity is unscreened in the ground state.
When the absolute value of the ratio of the impurity and bulk coupling strengths is greater than $frac45$, the impurity can be screened by adding a bound mode.
arXiv Detail & Related papers (2023-11-17T15:09:23Z) - The strongly driven Fermi polaron [49.81410781350196]
Quasiparticles are emergent excitations of matter that underlie much of our understanding of quantum many-body systems.
We take advantage of the clean setting of homogeneous quantum gases and fast radio-frequency control to manipulate Fermi polarons.
We measure the decay rate and the quasiparticle residue of the driven polaron from the Rabi oscillations between the two internal states.
arXiv Detail & Related papers (2023-08-10T17:59:51Z) - Topologically bound states, non-Hermitian skin effect and flat bands,
induced by two-particle interaction [91.3755431537592]
We study theoretically repelling quantum states of two spinless particles in a one-dimensional tight-binding model.
We demonstrate, that when the particles are not identical, their interaction drives nontrivial correlated two-particle states.
arXiv Detail & Related papers (2022-11-11T07:34:54Z) - Inducing spin-order with an impurity: phase diagram of the magnetic Bose
polaron [0.0]
impurity atom dressed by spin-wave excitations in a one-dimensional spinor Bose gas.
Mean-field theory fails as the spinor gas approaches immiscibility since the generated spin-wave excitations are prominent.
arXiv Detail & Related papers (2022-04-22T23:54:39Z) - Non-Gaussian superradiant transition via three-body ultrastrong coupling [62.997667081978825]
We introduce a class of quantum optical Hamiltonian characterized by three-body couplings.
We propose a circuit-QED scheme based on state-of-the-art technology that implements the considered model.
arXiv Detail & Related papers (2022-04-07T15:39:21Z) - Intra- and interband excitations induced residue decay of the Bose
polaron in a one-dimensional double-well [4.2575268077562685]
We investigate the polaronic properties of a single impurity immersed in a bosonic environment confined within a one-dimensional double-well potential.
We find that an increase of the impurity-bath coupling results in a vanishing residue.
These residue regimes are characterized by two critical values of the bosonic repulsion and originate from the interplay between the intra- and the interband excitations of the impurity.
arXiv Detail & Related papers (2021-11-04T15:36:41Z) - Phase diagram of a distorted kagome antiferromagnet and application to
Y-kapellasite [50.591267188664666]
We reveal a rich ground state phase diagram even at the classical level.
The presented model opens a new direction in the study of kagome antiferromagnets.
arXiv Detail & Related papers (2021-07-28T18:00:03Z) - Chiral Dirac-like fermion in spin-orbit-free antiferromagnetic
semimetals [21.85167942898987]
Dirac semimetal is a phase of matter, whose elementary excitation is described by the relativistic Dirac equation.
Inspired by the flavor symmetry in particle physics, we propose a massless Dirac-like equation yet linking two Weyl fields with the identical chirality.
Our work reveals a counterpart of the flavor symmetry in magnetic electronic systems, leading to further possibilities of emergent phenomena in quantum materials.
arXiv Detail & Related papers (2021-07-21T09:56:14Z) - Anomalous in-gap edge states in two-dimensional pseudospin-1 Dirac
insulators [0.0]
Quantum materials that host a flat band, such as pseudospin-1 lattices and magic-angle twisted bilayer graphene, can exhibit drastically new physical phenomena.
We report a surprising class of electronic in-gap edge states in pseudospin-1 materials.
In particular, we find that, in two-dimensional gapped (insulating) Dirac systems of massive spin-1 quasiparticles, in-gap edge modes can emerge through only an em electrostatic potential applied to a finite domain.
arXiv Detail & Related papers (2020-05-20T16:44:19Z)
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.