首页> 外文期刊>The Journal of Chemical Physics >A Jeziorski-Monkhorst fully uncontracted multi-reference perturbative treatment. I. Principles, second-order versions, and tests on ground state potential energy curves
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A Jeziorski-Monkhorst fully uncontracted multi-reference perturbative treatment. I. Principles, second-order versions, and tests on ground state potential energy curves

机译:A Jeziorski-Monkhorst完全无接受的多参考扰动治疗。 I.原则,二阶版本和地面潜在能量曲线上的测试

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The present paper introduces a new multi-reference perturbation approach developed at second order, based on a Jeziorski-Mokhorst expansion using individual Slater determinants as perturbers. Thanks to this choice of perturbers, an effective Hamiltonian may be built, allowing for the dressing of the Hamiltonian matrix within the reference space, assumed here to be a CAS-CI. Such a formulation accounts then for the coupling between the static and dynamic correlation effects. With our new definition of zeroth-order energies, these two approaches are strictly size-extensive provided that local orbitals are used, as numerically illustrated here and formally demonstrated in the Appendix. Also, the present formalism allows for the factorization of all double excitation operators, just as in internally contracted approaches, strongly reducing the computational cost of these two approaches with respect to other determinant-based perturbation theories. The accuracy of these methods has been investigated on ground-state potential curves up to full dissociation limits for a set of six molecules involving single, double, and triple bond breaking together with an excited state calculation. The spectroscopic constants obtained with the present methods are found to be in very good agreement with the full configuration interaction results. As the present formalism does not use any parameter or numerically unstable operation, the curves obtained with the two methods are smooth all along the dissociation path. Published by AIP Publishing.
机译:本文介绍了一种新的多参考扰动方法,其在二阶开发,基于使用单独的斯拉特语法作为Perturbers的Jeziorski-Mokhorst扩展。由于这种佩尔滕斯的选择,可以构建有效的汉密尔顿人,允许在参考空间内的汉密尔顿矩阵的敷设,这是一个CAS-CI。这样的配方算法然后用于静态和动态相关效果之间的耦合。凭借我们的零命令能量的新定义,这两种方法是严格的尺寸 - 只要使用本地轨道,就像在这里的数字上示出并在附录中正式证明。此外,目前的形式主义允许对所有双重激励运营商进行分解,就像在内部收缩的方法中一样,强烈降低了这两种方法的计算成本,相对于其他基于决定因素的扰动理论。已经在地面电位曲线上研究了这些方法的准确性,该曲线达到了涉及单个,双键和激发态计算的一组六个分子的六个分子的完全解离限制。发现用本方法获得的光谱常数与完全配置相互作用结果非常好。由于目前的形式主义不使用任何参数或数值不稳定的操作,用两种方法获得的曲线沿着解离路径顺畅。通过AIP发布发布。

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