4.6 Article

Efficient continuous-time quantum Monte Carlo algorithm for fermionic lattice models

Journal

PHYSICAL REVIEW B
Volume 91, Issue 24, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.91.241118

Keywords

-

Funding

  1. ERC Advanced Grant SIMCOFE
  2. Microsoft Research
  3. Swiss National Science Foundation through the National Competence Centers in Research NCCR QSIT
  4. MARVEL
  5. NSF [1066293]

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Efficient continuous-time quantum Monte Carlo (CT-QMC) algorithms that do not suffer from time discretization errors have become the state of the art for most discrete quantum models. They have not been widely used yet for fermionic quantum lattice models, such as the Hubbard model, nor other fermionic lattice systems due to a suboptimal scaling of O(beta(3)) with inverse temperature beta, compared to the linear scaling of discrete-time algorithms. Here we present a CT-QMC algorithm for fermionic lattice systems that matches the scaling of discrete-time methods but is more efficient and free of time discretization errors. This provides an efficient simulation scheme that is free from the systematic errors opening an avenue to more precise studies of large systems at low and zero temperature.

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