Effects of alternating interactions and boundary conditions on quantum entanglement of a three-leg Heisenberg ladder

IF 4.6 2区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Chinese Journal of Physics Pub Date : 2025-02-11 DOI:10.1016/j.cjph.2025.02.004
Qinghui Li , Lizhen Hu , Panpan Zhang , Chuanzheng Miao , Yuliang Xu , Zhongqiang Liu , Xiangmu Kong
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Abstract

The spin-1/2 three-leg antiferromagnetic Heisenberg spin ladder is studied under open boundary condition (OBC) and cylinder boundary condition (CBC), using the density matrix renormalization group and matrix product state methods. Specifically, we calculate the energy density, entanglement entropy, and concurrence while discussing the effects of the interleg interaction J2 and the alternating coupling parameter γ on these quantities. In the case of OBC and γ=0, we observe that the intraleg concurrence separation occurs between odd and even bonds within the system and that the introduction of γ can completely reverse this distribution of concurrence. On another note, the interleg concurrence is always present, regardless of the presence of γ. We also find that in the special case where γ=0, the CBC suppresses interleg concurrence; however, the introduction of γ can lead to the emergence of interleg concurrence between chains 1 and 3. This behavior becomes more complex due to the competition between CBC and γ. Additionally, we find that γ induces two types of long-distance entanglement (LDE) in the system under OBC: intraleg LDE and interleg one. When the system size is sufficiently large, both types of LDE reach the same strength and stabilize at a constant value. Compared to the two-leg ladder, the three-leg ladder is more effective in producing LDE. However, the generation of LDE is inhibited in the system under CBC, in which spin frustration exists. In addition, the results of energy, entanglement entropy, and concurrence show that there are essential relations between these quantities and the phase transitions of the system. Furthermore, we predict a phase transition point at approximately γ =0.54 under OBC. This study provides valuable insights into understanding the phase diagram of this class of systems.

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来源期刊
Chinese Journal of Physics
Chinese Journal of Physics 物理-物理:综合
CiteScore
8.50
自引率
10.00%
发文量
361
审稿时长
44 days
期刊介绍: The Chinese Journal of Physics publishes important advances in various branches in physics, including statistical and biophysical physics, condensed matter physics, atomic/molecular physics, optics, particle physics and nuclear physics. The editors welcome manuscripts on: -General Physics: Statistical and Quantum Mechanics, etc.- Gravitation and Astrophysics- Elementary Particles and Fields- Nuclear Physics- Atomic, Molecular, and Optical Physics- Quantum Information and Quantum Computation- Fluid Dynamics, Nonlinear Dynamics, Chaos, and Complex Networks- Plasma and Beam Physics- Condensed Matter: Structure, etc.- Condensed Matter: Electronic Properties, etc.- Polymer, Soft Matter, Biological, and Interdisciplinary Physics. CJP publishes regular research papers, feature articles and review papers.
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