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无数字投影的量子计算机上反对称双量子数幂的态制备。

State Preparation of Antisymmetrized Geminal Power on a Quantum Computer without Number Projection.

机构信息

Department of Physics and Astronomy, Rice University, Houston, Texas 77005, United States.

Department of Chemistry, Rice University, Houston, Texas 77005, United States.

出版信息

J Phys Chem A. 2023 May 11;127(18):4005-4014. doi: 10.1021/acs.jpca.3c00525. Epub 2023 Apr 27.

Abstract

The antisymmetrized geminal power (AGP) is equivalent to the number projected Bardeen-Cooper-Schrieffer (PBCS) wave function. It is also an elementary symmetric polynomial (ESP) state. We generalize previous research on deterministically implementing the Dicke state to a state preparation algorithm for an ESP state, or equivalently AGP, on a quantum computer. Our method is deterministic and has polynomial cost, and it does not rely on number symmetry breaking and restoration. We also show that our circuit is equivalent to a disentangled unitary paired coupled cluster operator and a layer of unitary Jastrow operator acting on a single Slater determinant. The method presented herein highlights the ability of disentangled unitary coupled cluster to capture nontrivial entanglement properties that are hardly accessible with traditional Hartree-Fock based electronic structure methods.

摘要

反对称双粒子关联(AGP)等同于投影 Bardeen-Cooper-Schrieffer(PBCS)波函数的数量。它也是一个初等对称多项式(ESP)态。我们将之前关于确定性实现 Dicke 态的研究推广到量子计算机上 ESP 态或等价的 AGP 的态制备算法。我们的方法是确定性的,具有多项式成本,不依赖于数的对称破缺和恢复。我们还表明,我们的电路等同于去纠缠幺正配对耦合簇算符和作用在单个 Slater 行列式上的幺正 Jastrow 算符的一层。本文提出的方法突出了去纠缠幺正耦合簇捕捉传统基于 Hartree-Fock 的电子结构方法难以获得的非平凡纠缠特性的能力。

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