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Triggering Boundary Phase Transitions through Bulk Measurements in 2D Cluster States

Quantum Physics 2023-10-25 v2 Strongly Correlated Electrons

Abstract

We investigate the phase diagram at the boundary of an infinite two-dimensional cluster state subject to bulk measurements using tensor network methods. The state is subjected to uniform measurements M=cosθZ+sinθXM = \cos{\theta}Z+\sin{\theta}X on the lower boundary qubits and in all bulk qubits. Our results show that the boundary of the system exhibits volume-law entanglement at the measurement angle θ=π/2\theta = \pi/2 and area-law entanglement for any θ<π/2\theta < \pi/2. Within the area-law phase, a phase transition occurs at θc=1.371\theta_c=1.371. The phase with θ(θc,π/2)\theta \in(\theta_c,\pi/2) is characterized by a noninjective matrix product state, which cannot be realized as the unique ground state of a one-dimensional local, gapped Hamiltonian. Instead, it resembles a cat state with spontaneous symmetry breaking. These findings demonstrate that the phase diagram of the boundary of a two-dimensional system can be more intricate than that of a standard one-dimensional system.

Keywords

Cite

@article{arxiv.2305.14231,
  title  = {Triggering Boundary Phase Transitions through Bulk Measurements in 2D Cluster States},
  author = {Yuchen Guo and Jian-Hao Zhang and Zhen Bi and Shuo Yang},
  journal= {arXiv preprint arXiv:2305.14231},
  year   = {2023}
}

Comments

7 pages, 6 figures

R2 v1 2026-06-28T10:43:15.527Z