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The effect of local approximations in the ground-state coupled cluster wave function on electron affinities of large molecules

机译:基态耦合簇波函数中的局部近似对大分子电子亲和力的影响

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A possibility to calculate electron affinities (EAs) by a software devised for electron excitations is exploited to examine the accuracy of a partly local EA-EOM-CCSD method. In the proposed approach local approximations are applied to the ground-state coupled cluster wave function, while the EAs themselves are obtained in a full configurational space. The results of a numerical test for 14 molecules show that already with standard local settings the method reproduces the nonlocal EAs with the average error of 0.009eV. Since the EA-EOM step of the calculation requires less computational resources than the computation of the CCSD ground state, the proposed hybrid approach can become a valuable tool for obtaining the EAs for molecules, which are too large for a canonical CCSD calculation, but still small enough for the EA-EOM step to be performed in a nonlocal way.
机译:利用一种为电子激发而设计的软件来计算电子亲和力(EA)的可能性,可用于检验部分局部EA-EOM-CCSD方法的准确性。在提出的方法中,将局部近似应用于基态耦合簇波函数,而EA本身是在完整的配置空间中获得的。对14个分子进行数值测试的结果表明,该方法已经在标准本地设置下重现了非本地EA,平均误差为0.009eV。由于计算的EA-EOM步骤所需的计算资源比CCSD基态的计算要少,因此所提出的混合方法可以成为获取分子EA的有价值的工具,而对于标准CCSD计算而言,EA太大了。足够小,可以以非本地方式执行EA-EOM步骤。

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