arXiv Open Access 2020

Hybrid quantum-classical algorithms for solving quantum chemistry in Hamiltonian-wavefunction space

Zhan-Hao Yuan Tao Yin Dan-Bo Zhang
Lihat Sumber

Abstrak

Variational quantum eigensolver~(VQE) typically optimizes variational parameters in a quantum circuit to prepare eigenstates for a quantum system. Its applications to many problems may involve a group of Hamiltonians, e.g., Hamiltonian of a molecule is a function of nuclear configurations. In this paper, we incorporate derivatives of Hamiltonian into VQE and develop some hybrid quantum-classical algorithms, which explores both Hamiltonian and wavefunction spaces for optimization. Aiming for solving quantum chemistry problems more efficiently, we first propose mutual gradient descent algorithm for geometry optimization by updating parameters of Hamiltonian and wavefunction alternatively, which shows a rapid convergence towards equilibrium structures of molecules. We then establish differential equations that governs how optimized variational parameters of wavefunction change with intrinsic parameters of the Hamiltonian, which can speed up calculation of energy potential surface. Our studies suggest a direction of hybrid quantum-classical algorithm for solving quantum systems more efficiently by considering spaces of both Hamiltonian and wavefunction.

Topik & Kata Kunci

Penulis (3)

Z

Zhan-Hao Yuan

T

Tao Yin

D

Dan-Bo Zhang

Format Sitasi

Yuan, Z., Yin, T., Zhang, D. (2020). Hybrid quantum-classical algorithms for solving quantum chemistry in Hamiltonian-wavefunction space. https://arxiv.org/abs/2008.09014

Akses Cepat

Lihat di Sumber
Informasi Jurnal
Tahun Terbit
2020
Bahasa
en
Sumber Database
arXiv
Akses
Open Access ✓