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用量子比特截断法对转子链进行纠缠量化:在双极端 fullerene 豆荚中的应用。

Quantifying entanglement of rotor chains using basis truncation: Application to dipolar endofullerene peapods.

机构信息

Department of Chemistry, University of Waterloo, Waterloo, Ontario N2L 3G1, Canada.

出版信息

J Chem Phys. 2018 Feb 21;148(7):074112. doi: 10.1063/1.5011769.

Abstract

We propose a variational approach for the calculation of the quantum entanglement entropy of assemblies of rotating dipolar molecules. A basis truncation scheme based on the total angular momentum quantum number is proposed. The method is tested on hydrogen fluoride (HF) molecules confined in C fullerene cages themselves trapped in a nanotube to form a carbon peapod. The rotational degrees of freedom of the HF molecules and dipolar interactions between neighboring molecules are considered in our model Hamiltonian. Both screened and unscreened dipoles are simulated and results are obtained for the ground state and one excited state that is expected to be accessible via a far-infrared collective excitation. The effect of basis truncation on energetic and entanglement properties is examined and discussed in terms of size extensivity. It is empirically found that for unscreened dipoles, a total angular momentum cutoff that increases linearly with the number of rotors is required in order to obtain proper system size scaling of the chemical potential and entanglement entropy. Recent experiments [A. Krachmalnicoff et al., Nat. Chem. 8, 953 (2016)] suggest substantial screening of the HF dipole moment, so much smaller basis sets are required to obtain converged results in this realistic case. Static correlation functions are also computed and are shown to decay much quicker in the case of screened dipoles. Our variational results are also used to test the accuracy of perturbative and pairwise ansatz treatments.

摘要

我们提出了一种计算旋转偶极分子组装体量子纠缠熵的变分方法。提出了一种基于总角动量量子数的基截断方案。该方法在囚禁于碳纳米管中的 C60 富勒烯笼内的氟化氢 (HF) 分子上进行了测试,这些分子形成了碳豆荚。我们的模型哈密顿量中考虑了 HF 分子的旋转自由度和相邻分子之间的偶极相互作用。模拟了屏蔽和非屏蔽偶极子,并获得了基态和一个激发态的结果,预计可以通过远红外集体激发达到该激发态。根据尺寸扩展性,考察并讨论了基截断对能量和纠缠性质的影响。经验发现,对于非屏蔽偶极子,为了获得化学势和纠缠熵的适当系统尺寸标度,需要增加与转子数量成线性关系的总角动量截止值。最近的实验[A. Krachmalnicoff 等人,Nat. Chem. 8, 953 (2016)]表明 HF 偶极矩有很大的屏蔽作用,因此在这种实际情况下,需要更小的基组才能获得收敛的结果。还计算了静态相关函数,并表明在屏蔽偶极子的情况下,它们的衰减速度要快得多。我们的变分结果也用于测试微扰和对易假设处理的准确性。

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