Pith. sign in

Excited States from ADAPT-VQE convergence path in Many-Body Problems: application to nuclear pairing problem and $H_4$ molecule dissociation

1 Pith paper cite this work. Polarity classification is still indexing.

1 Pith paper citing it
abstract

A quantum computing algorithm is proposed to obtain low-lying excited states in many-body interacting systems. The approximate eigenstates are obtained by using a quantum space diagonalization method in a subspace of states selected from the convergence path of the ADAPT-VQE (adaptive derivative-assembled pseudo-Trotter Ansatz variational quantum eigensolver) towards the ground state of the many-body problem. This method is shown to be accurate with only a small overhead in terms of quantum resources required to get the ground state. We also show that the quantum algorithm might be used to facilitate the convergence of the ADAPT-VQE method itself. Successful applications of the technique are made to like-particle pairing as well as neutron-proton pairing. Finally, the $H_4$ molecule's dissociation also illustrates the technique, demonstrating its accuracy and versatility.

citation-role summary

method 1

citation-polarity summary

fields

nucl-th 1

years

2025 1

verdicts

CONDITIONAL 1

roles

method 1

polarities

use method 1

representative citing papers

citing papers explorer

Showing 1 of 1 citing paper.

  • Comparison of variational quantum eigensolvers in light nuclei nucl-th · 2025-07-18 · conditional · none · ref 46 · internal anchor

    For p-shell nuclei from 6He to 10B, ADAPT-VQE uses fewer total operations than UCC when the many-body space is small (dim(H) < 51), while UCC wins for mid-shell nuclei with dim(H) at least 51.