Affiliation:
1. Singapore University of Technology and Design
2. University of Maryland, College Park
3. Nanyang Technological University
4. National University of Singapore
5. UMI MajuLab
6. Abdus Salam International Centre for Theoretical Physics
Abstract
The calculation of off-diagonal matrix elements has various applications in fields such as nuclear physics and quantum chemistry. In this paper, we present a noisy intermediate scale quantum algorithm for estimating the diagonal and off-diagonal matrix elements of a generic observable in the energy eigenbasis of a given Hamiltonian without explicitly preparing its eigenstates. By means of numerical simulations we show that this approach finds many of the matrix elements for the one and two qubits cases. Specifically, while in the first case, one can initialize the ansatz parameters over a broad interval, in the latter the optimization landscape can significantly slow down the speed of convergence and one should therefore be careful to restrict the initialization to a smaller range of parameters.
Funder
Advanced Scientific Computing Research
Air Force Office of Scientific Research
Army Research Office
Defense Advanced Research Projects Agency
Israel Science Foundation
Ministry of Education - Singapore
National Research Foundation Singapore
National Science Foundation
United States Department of Energy
Subject
General Physics and Astronomy