Optimising Trotter-Suzuki Decompositions for Quantum Simulation Using Evolutionary Strategies

被引:7
|
作者
Jones, Benjamin D. M. [1 ]
White, David R. [1 ]
O'Brien, George O. [1 ]
Clark, John A. [1 ]
Campbell, Earl T. [2 ]
机构
[1] Univ Sheffield, Dept Comp Sci, Sheffield, S Yorkshire, England
[2] Univ Sheffield, Dept Phys, Sheffield, S Yorkshire, England
基金
英国工程与自然科学研究理事会;
关键词
Quantum Computing; Quantum Simulation; Evolutionary Strategies; CMA-ES; MANY-BODY THEORIES; ADAPTATION;
D O I
10.1145/3321707.3321835
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
One of the most promising applications of near-term quantum computing is the simulation of quantum systems, a classically intractable task. Quantum simulation requires computationally expensive matrix exponentiation; Trotter-Suzuki decomposition of this exponentiation enables efficient simulation to a desired accuracy on a quantum computer. We apply the Covariance Matrix Adaptation Evolutionary Strategy (CMA-ES) algorithm to optimise the Trotter-Suzuki decompositions of a canonical quantum system, the Heisenberg Chain; we reduce simulation error by around 60%. We introduce this problem to the computational search community, show that an evolutionary optimisation approach is robust across runs and problem instances, and find that optimisation results generalise to the simulation of larger systems.
引用
收藏
页码:1223 / 1231
页数:9
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