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首页> 外文期刊>Physical review, E >Finite-size effects in canonical and grand-canonical quantum Monte Carlo simulations for fermions
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Finite-size effects in canonical and grand-canonical quantum Monte Carlo simulations for fermions

机译:规范和宏观规范量子蒙特卡罗模拟的有限尺寸效果

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We introduce a quantum Monte Carlo method at finite temperature for interacting fermionic models in the canonical ensemble, where the conservation of the particle number is enforced. Although general thermodynamic arguments ensure the equivalence of the canonical and the grand-canonical ensembles in the thermodynamic limit, their approach to the infinite-volume limit is distinctively different. Observables computed in the canonical ensemble generically display a finite-size correction proportional to the inverse volume, whereas in the grandcanonical ensemble the approach is exponential in the ratio of the linear size over the correlation length. We verify these predictions by quantum Monte Carlo simulations of the Hubbard model in one and two dimensions in the grand-canonical and the canonical ensemble. We prove an exact formula for the finite-size part of the free energy density, energy density and other observables in the canonical ensemble and relate this correction to a susceptibility computed in the corresponding grand-canonical ensemble. This result is confirmed by an exact computation of the one-dimensional classical Ising model in the canonical ensemble, which for classical models corresponds to the so-called fixed-magnetization ensemble. Our method is useful for simulating finite systems which are not coupled to a particle bath, such as in nuclear or cold atom physics.
机译:我们在有限温度下引入量子蒙特卡罗方法,用于在规范集合中的互动模型中的互动模型,在那里强制保护粒子数。虽然一般热力学争论确保了热力学极限中规范和宏观规范集合的等价,但它们对无限量限制的方法是鲜明的。在规范集合中计算的可观察到经常显示与逆量成比例的有限尺寸校正,而在宏大集合中,该方法在线性尺寸上通过相关长度的比率是指数。我们在大规范和典型集合中的一个和两个维度中核对船体模型的量子蒙特卡罗模拟的这些预测。我们证明了规范集合中的自由能量密度,能量密度和其他可观察者的有限尺寸部分的确切公式,并将这种校正与在相应的宏观规范集合中计算的易感性相关联。该结果是通过在规范集合中的一维经典ising模型的精确计算来确认,该典型模型对应于所谓的固定磁化集合。我们的方法可用于模拟不耦合到颗粒浴的有限系统,例如在核或冷原子物理学中。

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