November 2023

Journal

Simulations of subatomic many-body physics on a quantum frequency processor

By:
Lu, Hsuan-Hao; Klco, Natalie M; Lukens, Joseph M; Morris, Titus D; Bansal, A.; Eckstroem, Andreas; Hagen, Gaute ; Papenbrock, Thomas F; Weiner, Andrew; Savage, Martin J; Lougovski, Pavel
Journal Name:
Physical Review A
Page Number:
12320
Volume:
100
Issue Number:
1
Publication Date:
November 9, 2023
View DOI Listing:
https://doi.org/10.1103/PhysRevA.100.012320

Abstract

Simulating complex many-body quantum phenomena is a major scientific impetus behind the development of quantum computing, and a range of technologies are being explored to address such systems. We present the results of the largest photonics-based simulation to date, applied in the context of subatomic physics. Using an all-optical quantum frequency processor, the ground-state energies of light nuclei including the triton (3H), 3He, and the alpha particle (4He) are computed. Complementing these calculations and utilizing a 68-dimensional Hilbert space, our photonic simulator is used to perform subnucleon calculations of the two- and three-body forces between heavy mesons in the Schwinger model. This work is a first step in simulating subatomic many-body physics on quantum frequency processors—augmenting classical computations that bridge scales from quarks to nuclei.