Demonstrating Quadratic Monte Carlo Speedup via Quantum Amplitude Estimation: Nuclear Engineering Examples
Abstract
We demonstrate quantum amplitude estimation (QAE) as a route to quadratic speedup for Monte Carlo-type expectation values in nuclear engineering. Using QPE-based QAE, we study two examples: a discrete fission-neutron-yield expectation and a U-238 resonance integral under a slowing-down spectrum. The toy problem is implemented as a gate-level Qiskit circuit, while the resonance-integral example is simulated through an exact eigendecomposition of the Grover operator to avoid state-preparation decomposition bottlenecks. In both cases, the squared error scales as with the number of oracle calls , compared with the classical Monte Carlo scaling . For the U-238 example, QAE recovers the resonance integral to approximately relative error with phase-estimation qubits.
Cite
@article{arxiv.2607.10772,
title = {Demonstrating Quadratic Monte Carlo Speedup via Quantum Amplitude Estimation: Nuclear Engineering Examples},
author = {Jilang Miao and Miaomiao Jin and Akira Sone},
journal= {arXiv preprint arXiv:2607.10772},
year = {2026}
}
Comments
4 pages,3 figures, submitted to 2026 ANS Annual Conference