We present an exact simulation of a one-dimensional transverse Ising spin chain with a quantum computer. We construct an efficient quantum circuit that diagonalizes the Ising Hamiltonian and allows to obtain all eigenstates of the model by just preparing the computational basis states. With an explicit example of that circuit for n=4 spins, we compute the expected value of the ground state magnetization, the time evolution simulation and provide a method to also simulate thermal evolution. All circuits are run in IBM and Rigetti quantum devices to test and compare them qualitatively.
@article{arxiv.1807.07112,
title = {Exact Ising model simulation on a quantum computer},
author = {Alba Cervera-Lierta},
journal= {arXiv preprint arXiv:1807.07112},
year = {2018}
}
Comments
The program used for this work for the IBM quantum devices was awarded with the IBM "Teach Me QISKit" award. Accepted in Quantum journal (2018-12-18)