English

From Ground States to Local Hamiltonians

Quantum Physics 2013-05-30 v4

Abstract

Traditional quantum physics solves ground states for a given Hamiltonian, while quantum information science asks for the existence and construction of certain Hamiltonians for given ground states. In practical situations, one would be mainly interested in local Hamiltonians with certain interaction patterns, such as nearest neighbour interactions on some type of lattices. A necessary condition for a space VV to be the ground-state space of some local Hamiltonian with a given interaction pattern, is that the maximally mixed state supported on VV is uniquely determined by its reduced density matrices associated with the given pattern, based on the principle of maximum entropy. However, it is unclear whether this condition is in general also sufficient. We examine the situations for the existence of such a local Hamiltonian to have VV satisfying the necessary condition mentioned above as its ground-state space, by linking to faces of the convex body of the local reduced states. We further discuss some methods for constructing the corresponding local Hamiltonians with given interaction patterns, mainly from physical points of view, including constructions related to perturbation methods, local frustration-free Hamiltonians, as well as thermodynamical ensembles.

Keywords

Cite

@article{arxiv.1110.6583,
  title  = {From Ground States to Local Hamiltonians},
  author = {Jianxin Chen and Zhengfeng Ji and Bei Zeng and D. L. Zhou},
  journal= {arXiv preprint arXiv:1110.6583},
  year   = {2013}
}

Comments

11 pages, 2 figures, to be published in PRA

R2 v1 2026-06-21T19:27:59.176Z