Estimating truncation effects of quantum bosonic systems using sampling algorithms
Hanada, Masanori, Liu, Junyu, Rinaldi, Enrico, Tezuka, Masaki
–arXiv.org Artificial Intelligence
To simulate bosons on a qubit- or qudit-based quantum computer, one has to regularize the theory by truncating infinite-dimensional local Hilbert spaces to finite dimensions. In the search for practical quantum applications, it is important to know how big the truncation errors can be. In general, it is not easy to estimate errors unless we have a good quantum computer. In this paper we show that traditional sampling methods on classical devices, specifically Markov Chain Monte Carlo, can address this issue with a reasonable amount of computational resources available today. As a demonstration, we apply this idea to the scalar field theory on a two-dimensional lattice, with a size that goes beyond what is achievable using exact diagonalization methods. This method can be used to estimate the resources needed for realistic quantum simulations of bosonic theories, and also, to check the validity of the results of the corresponding quantum simulations.
arXiv.org Artificial Intelligence
Mar-31-2023
- Country:
- North America > United States
- New Mexico > Los Alamos County
- Los Alamos (0.04)
- Michigan > Washtenaw County
- Ann Arbor (0.14)
- Illinois > Cook County
- Chicago (0.05)
- New Mexico > Los Alamos County
- Europe > United Kingdom
- Asia
- Middle East > Jordan (0.04)
- Japan > Honshū
- Kantō
- Tokyo Metropolis Prefecture > Tokyo (0.14)
- Saitama Prefecture > Saitama (0.04)
- Kansai > Kyoto Prefecture
- Kyoto (0.04)
- Kantō
- North America > United States
- Genre:
- Research Report (0.82)
- Industry:
- Information Technology (0.46)
- Technology: