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    Quantum Monte Carlo calculations in the nuclear shell model by the complex Langevin method

    Yuhma Asano1,2,*, Yuta Ito3,†, Jun Nishimura4,5,‡, and Noritaka Shimizu6,§

    • *Contact author: asano@het.ph.tsukuba.ac.jp
    • Contact author: y-itou@tokuyama.ac.jp
    • Contact author: jnishi@post.kek.jp
    • §Contact author: shimizu@nucl.ph.tsukuba.ac.jp

    Phys. Rev. C 114, 034319 – Published 16 September, 2026

    DOI: https://doi.org/10.1103/5gm7-2ykt

    Abstract

    The nuclear shell model is known to describe the properties of various nuclei extremely well. However, the auxiliary-field quantum Monte Carlo calculations cannot be applied to it with general interactions due to the sign problem. The model has therefore been investigated primarily by variational methods, where the accuracy of the results depends crucially on the ansatz for the wave function. Here we perform the auxiliary-field quantum Monte Carlo calculations in the case of small systems at finite temperature using the complex Langevin method (CLM), which has been successfully applied to various interesting systems with the sign problem over the decade. In particular, we show the existence of a parameter region in which the validity criterion for the CLM is satisfied and the expectation value of the energy obtained by exact diagonalization is correctly reproduced. Thus the CLM can be a complementary approach to the variational method for large systems.

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