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Quantum Monte Carlo calculations of neutron matter with chiral three-body forces

机译:具有手性三体力的中子物质的量子蒙特卡罗计算

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摘要

Chiral effective field theory (EFT) enables a systematic description of low-energy hadronic interactions with controlled theoretical uncertainties. For strongly interacting systems, quantum Monte Carlo (QMC) methods provide some of the most accurate solutions, but they require as input local potentials. We have recently constructed local chiral nucleon-nucleon (NN) interactions up to next-to-next-to-leading order ((NLO)-L-2). Chiral EFT naturally predicts consistent many-body forces. In this paper, we consider the leading chiral three-nucleon (3N) interactions in local form. These are included in auxiliary field diffusion Monte Carlo (AFDMC) simulations. We present results for the equation of state of neutron matter and for the energies and radii of neutron drops. In particular, we study the regulator dependence at the Hartree-Fock level and in AFDMC and find that present local regulators lead to less repulsion from 3N forces compared to the usual nonlocal regulators.
机译:手性有效场理论(EFT)能够系统地描述与受控理论不确定性的低能量辐射相互作用。 对于强烈的交互系统,量子蒙特卡罗(QMC)方法提供了一些最准确的解决方案,但它们需要输入局部电位。 我们最近构建了局部手性核仁(NN)相互作用,直到下一对下的顺序((NLO)-L-2)。 手性EFT自然预测一致的许多身体力量。 在本文中,我们认为局部形式的前三核(3N)相互作用。 这些包含在辅助场扩散蒙特卡罗(AFDMC)模拟中。 我们为中子物质状态的结果和中子滴的能量和半径呈现结果。 特别是,我们研究了调节器在Hartree-Fock水平和AFDMC中的依赖性,并发现当前局部调节器与通常的非本体调节剂相比,从3N力的排名较小。

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