论文标题

对称破裂的速度慢慢的变化量子本素粒的收敛性

Symmetry breaking slows convergence of the ADAPT Variational Quantum Eigensolver

论文作者

Bertels, Luke W., Grimsley, Harper R., Economou, Sophia E., Barnes, Edwin, Mayhall, Nicholas J.

论文摘要

由于预计分子系统的量子模拟将为表现强电子相关性的系统提供最强的优势,因此必须评估VQE的性能,以评估强烈相关系统的VQE的性能。对于经典的模拟,强相关通常会导致对称对称性的参考,从而导致Löwdin众所周知的``对称困境'',从而可以通过破坏旋转或空间对称性来提高能量的准确性。在这里,我们探讨了使用两个密切相关的系统对对称性破坏对自适应-VQE的性能的影响:(i)````fermionized''各向异性海森伯格模型,各向异性参数控制系统中的相关性,以及(ii)符号图的线性conter contertight flination flination flination flination flination contraction flination conter conter contrion contrive contrion conter conter contrection contrection conter contre contrection h4 h4} in h4} in h4}。这些案例增加了系统的相关水平会导致自发的对称性破裂(分别是平均场解决方案的均值和$ \ hat {s}^{2} $),我们分析了对称性的作用。通过打破对称性,对适应性VQE产生了有害影响,这是通过增加能量收敛所必需的ANSATZ的长度并加剧``梯度槽''的问题。

Because quantum simulation of molecular systems is expected to provide the strongest advantage over classical computing methods for systems exhibiting strong electron correlation, it is critical that the performance of VQEs be assessed for strongly correlated systems. For classical simulation, strong correlation often results in symmetry-breaking of the Hartree-Fock reference, leading to Löwdin's well-known ``symmetry dilemma'' whereby accuracy in the energy can be increased by breaking spin or spatial symmetries. Here, we explore the impact of symmetry breaking on the performance of ADAPT-VQE using two strongly correlated systems: (i) the ``fermionized" anisotropic Heisenberg model, where the anisotropy parameter controls the correlation in the system, and (ii) symmetrically-stretched linear \ce{H4}, where correlation increases with increasing H-H separation. In both of these cases, increasing the level of correlation of the system leads to spontaneous symmetry breaking (parity and $\hat{S}^{2}$, respectively) of the mean-field solutions. We analyze the role that symmetry breaking in the reference states and orbital mappings of the fermionic Hamiltonians have on the compactness and performance of ADAPT-VQE. We observe that improving the energy of the reference states by breaking symmetry has a deleterious effect on ADAPT-VQE by increasing the length of the ansatz necessary for energy convergence and exacerbating the problem of ``gradient troughs".

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