English

Series-Expansion Thermal Tensor Network Approach for Quantum Lattice Models

Strongly Correlated Electrons 2017-04-12 v2 Statistical Mechanics Quantum Physics

Abstract

In this work we propose a series-expansion thermal tensor network (SETTN) approach for efficient simulations of quantum lattice models. This continuous-time SETTN method is based on the numerically exact Taylor series expansion of equilibrium density operator eβHe^{-\beta H} (with HH the total Hamiltonian and β\beta the imaginary time), and is thus Trotter-error free. We discover, through simulating XXZ spin chain and square-lattice quantum Ising models, that not only the Hamiltonian HH, but also its powers HnH^n, can be efficiently expressed as matrix product operators, which enables us to calculate with high precision the equilibrium and dynamical properties of quantum lattice models at finite temperatures. Our SETTN method provides an alternative to conventional Trotter-Suzuki renormalization group (RG) approaches, and achieves an unprecedented standard of thermal RG simulations in terms of accuracy and flexibility.

Keywords

Cite

@article{arxiv.1609.01263,
  title  = {Series-Expansion Thermal Tensor Network Approach for Quantum Lattice Models},
  author = {Bin-Bin Chen and Yun-Jing Liu and Ziyu Chen and Wei Li},
  journal= {arXiv preprint arXiv:1609.01263},
  year   = {2017}
}

Comments

5 pages, 6 figures, accepted by PRB Rapid Commun

R2 v1 2026-06-22T15:40:25.796Z