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Multiset Variational Quantum Dynamics Algorithm for Simulating Nonadiabatic Dynamics on Quantum Computers

delete2025-04-10
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PRE
AI
J
Jingjing Li
W
Weitang Li
X
Xiaoxiao Xiao
L
Limin Liu
李振东 cover
李振东 (Zhendong Li)
J
Jiajun Ren *
方维海 (Wei‐Hai Fang)
DOI:10.1021/acs.jpclett.5c00739delete
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Abstract

Abstract

En 中文
Accelerating quantum dynamical simulations with quantum computing has received considerable attention but remains a significant challenge. In variational quantum algorithms for quantum dynamics, designing an expressive and shallow-depth parametrized quantum circuit (PQC) is a key difficulty. Here, we propose a multiset variational quantum dynamics algorithm (MS-VQD) tailored for nonadiabatic dynamics involving multiple electronic states. The MS-VQD employs multiple PQCs to represent the electronic-nuclear coupled wave function, with each circuit adapting to the motion of the nuclear wavepacket on a specific potential energy surface. By simulating excitation energy transfer dynamics in molecular aggregates described by the Frenkel-Holstein model, we demonstrate that the MS-VQD achieves the same accuracy as the traditional VQD while requiring significantly shallower PQCs. Notably, its advantage increases with the number of electronic states, making it suitable for simulating nonadiabatic quantum dynamics in complex molecular systems.
Keywords:
TIME-DEPENDENT HARTREE
EIGENSOLVER

Journal

Journal of Physical Chemistry Letters cover
Journal of Physical Chemistry Letters
IF:
4.6
Papers:
2.5K
Citations:
7.4W

Organization

C
Chinese Univ Hong Kong
Scholars:
2.6K
Papers: 1.6K
Citations: 662