English

ADAPT-QSCI: Adaptive Construction of an Input State for Quantum-Selected Configuration Interaction

Quantum Physics 2024-12-12 v2

Abstract

We present a quantum-classical hybrid algorithm for calculating the ground state and its energy of the quantum many-body Hamiltonian by proposing an adaptive construction of a quantum state for the quantum-selected configuration interaction (QSCI) method. QSCI allows us to select important electronic configurations in the system to perform CI calculation (subspace diagonalization of the Hamiltonian) by sampling measurement for a proper input quantum state on a quantum computer, but how we prepare a desirable input state has remained a challenge. We propose an adaptive construction of the input state for QSCI in which we run QSCI repeatedly to grow the input state iteratively. We numerically illustrate that our method, dubbed ADAPT-QSCI, can yield accurate ground-state energies for small molecules, including a noisy situation for eight qubits where error rates of two-qubit gates and the measurement are both as large as 1%. ADAPT-QSCI serves as a promising method to take advantage of current noisy quantum devices and pushes forward its application to quantum chemistry.

Keywords

Cite

@article{arxiv.2311.01105,
  title  = {ADAPT-QSCI: Adaptive Construction of an Input State for Quantum-Selected Configuration Interaction},
  author = {Yuya O. Nakagawa and Masahiko Kamoshita and Wataru Mizukami and Shotaro Sudo and Yu-ya Ohnishi},
  journal= {arXiv preprint arXiv:2311.01105},
  year   = {2024}
}

Comments

14 pages

R2 v1 2026-06-28T13:09:27.401Z