Emergence of long-range entanglement and odd-even effect in periodic generalized quantum cluster models
arXiv:2512.13110 · doi:10.1103/7wnp-v9f9
Abstract
We investigate the entanglement properties in a generalized quantum cluster model under periodic boundary condition. By evaluating the quantum conditional mutual information entropy under four subsystem partitions, we identify clear signatures of long-range entanglement. Specifically, when both the system size and the interaction range are odd, the system exhibits nonzero four-part quantum conditional mutual information entropies in infinitesimal but finite field. This nonvanishing four-part quantum conditional mutual information entropy directly signals the presence of long-range entanglement. In contrast, all other combination of and yield vanishing four-part quantum conditional mutual information entropy. Remarkably, in the case of , these long-range entangled features persist even in the presence of a large transverse field, demonstrating their robustness against quantum fluctuations. These results demonstrate how the interplay between system size and interaction range governs the emergence of long-range entanglement in one-dimensional generalized quantum cluster model.
References in corpus (16)
- Entanglement Spectrum as a Generalization of Entanglement Entropy: Identification of Topological Order in Non-Abelian Fractional Quantum Hall Effect States
- Bipartite entanglement and entropic boundary law in lattice spin systems
- Ground state entanglement and geometric entropy in the Kitaev's model
- One-Dimensional Symmetry Protected Topological Phases and their Transitions
- Choreographed entangle dances: topological states of quantum matter
- Identifying phases of quantum many-body systems that are universal for quantum computation
- Topological Entanglement Entropy from the Holographic Partition Function
- Emergent phase transition in Cluster Ising model with dissipation
- Topological and nematic ordered phases in many-body cluster-Ising models
- Detecting and stabilizing measurement-induced symmetry-protected topological phases in generalized cluster models
- Long-range entanglement and topological excitations
- Random unitaries, Robustness, and Complexity of Entanglement
- Steering-induced phase transition in measurement-only quantum circuits
- The global phase diagram of the cluster-XY spin chain with dissipation
- Measurement-Driven Transitions between Area Law Phases
- Continuously varying critical exponents in an exactly solvable long-range cluster XY mode