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September 17, 2025Quantum Science and Technology0 citations

A simple quantum simulation algorithm with near-optimal precision scaling

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AKAmir KalevIHItay Hen

Key Points

  • The proposed algorithm achieves near-optimal scaling in simulation precision for quantum systems, improving feasibility.
  • Existing simulation techniques are complex and challenging for implementation on current quantum hardware, unlike this approach.
  • Trotter-based methods are noted for their suboptimal scaling, highlighting the need for improved strategies in simulation accuracy.
  • By focusing on simplicity and precision, this quantum Hamiltonian dynamics algorithm may facilitate advances in quantum computing.

Abstract

Abstract Quantum simulation is a foundational application for quantum computers, projected to offer insights into complex quantum systems beyond the reach of classical computation. However, with the exception of Trotter-based methods, which suffer from suboptimal scaling with respect to simulation precision, existing simulation techniques are, for the most part, too intricate to implement on early fault-tolerant quantum hardware. We propose a quantum Hamiltonian dynamics simulation algorithm that aims to be both straightforward to implement and, at the same time, have near-optimal scaling in simulation precision.

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Cite This Study

Kalev et al. (2025) studied this question.

synapsesocial.com/papers/68d4567431b076d99fa5bf72https://doi.org/10.1088/2058-9565/ae075a
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