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首页> 外文期刊>The Journal of Chemical Physics >Exact parameterization of fermionic wave functions via unitary coupled cluster theory
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Exact parameterization of fermionic wave functions via unitary coupled cluster theory

机译:通过整体耦合簇理论的Fermionic波函数的精确参数化

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A formal analysis is conducted on the exactness of various forms of unitary coupled cluster (UCC) theory based on particle-hole excitation and de-excitation operators. Both the conventional single exponential UCC parameterization and a factorized (referred to here as "disentangled") version are considered. We formulate a differential cluster analysis to determine the UCC amplitudes corresponding to a general quantum state. The exactness of conventional UCC (ability to represent any state) is explored numerically, and it is formally shown to be determined by the structure of the critical points of the UCC exponential mapping. A family of disentangled UCC wave functions is proven to exactly parameterize any state, thus showing how to construct Trotter-error-free parameterizations of UCC for applications in quantum computing. From these results, we construct an exact disentangled UCC parameterization that employs an infinite sequence of particle-hole or general one- and two-body substitution operators. Published under license by AIP Publishing.
机译:基于粒子孔激发和去激励算子的各种形式的单一形式的单一形式耦合集群(UCC)理论进行了正式分析。考虑了传统的单指数UCC参数化和分解(参见这里作为“解散”)版本。我们制定差异集群分析以确定对应于通用量子状态的UCC幅度。在数值上探讨传统UCC的确切性(表示任何状态的能力),并且正式地示出由UCC指数映射的关键点的结构来确定。被证明的一个脱屑的UCC波函数的家庭恰好参数化任何状态,从而展示了如何为量子计算中的应用程序构建UCC的托管无错误的参数。从这些结果来看,我们构建了一个精确的解剖学UCC参数化,该参数化采用无限粒子孔或一般的单体替代操作员。通过AIP发布在许可证下发布。

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