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June 20, 2026Journal of Chemical Theory and Computation0 citations

A Deterministic Framework for Neural Network Quantum States in Quantum Chemistry

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ZCZheng Che

Key Points

  • The aim is to develop a deterministic framework for optimizing neural network quantum states to improve efficiency and accuracy in quantum chemistry calculations.
  • Implemented a deterministic optimization framework for neural network quantum states.
  • Utilized hybrid CPU-GPU architecture for computational efficiency.
  • Tested on strongly correlated systems with benchmarks on molecular bond dissociations.
  • Achieved stable convergence and accuracy comparable to reference methods.
  • Empirical sublinear wall-time scaling relative to subspace size was observed.
  • Enabled calculations within Hilbert spaces of 10^23 configurations.

Abstract

We present a deterministic optimization framework for neural network quantum states (NQS) designed to bypass the sampling variance and slow mixing issues inherent in stochastic optimization. By projecting a neural backflow ansatz onto dynamically evolving configuration subspaces, our method provides a systematic route for optimizing the selected variational component of the wave function and estimating residual correlation through a posthoc second-order perturbative correction. The implementation utilizes a hybrid CPU-GPU architecture that shows empirical sublinear wall-time scaling with respect to the subspace size over the tested range, enabling the calculation of strongly correlated systems, such as the chromium dimer, within Hilbert spaces of 10 23 configurations. Benchmarks on molecular bond dissociations demonstrate that this deterministic approach yields stable convergence and accuracies comparable to selected reference methods in the tested systems.

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Cite This Study

Zheng Che (2026) studied this question.

synapsesocial.com/papers/6a363172db0793dc1a5385cchttps://doi.org/10.1021/acs.jctc.6c00445
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Neural Quantum States Based on Selected Configurations2026
  2. 2Improved optimization for the neural-network quantum states and tests on the chromium dimer2024 · 17 citations
  3. 3Hybrid Tensor Network and Neural Network Quantum States for Quantum Chemistry2025 · 3 citations
  4. 4Quantum-Enhanced Neural Networks for Quantum Many-Body Simulations2026 · 1 citations
  5. 5Improved Optimization for the Neural-network Quantum States and Tests on the Chromium Dimer2024