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Linear-response time-dependent density-functional theory with pairing fields

机译:具有配对场的线性响应时变密度函数理论

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Recent development in particle-particle random phase approximation (pp-RPA) broadens the perspective on ground state correlation energies [H. van Aggelen, Y. Yang, and W. Yang, Phys. Rev. A 88, 030501 (2013), Y. Yang, H. van Aggelen, S. N. Steinmann, D. Peng, andW. Yang, J. Chem. Phys. 139, 174110 (2013); D. Peng, S. N. Steinmann, H. van Aggelen, and W. Yang, J. Chem. Phys. 139, 104112 (2013)] and N ±2 excitation energies [Y. Yang, H. van Aggelen, andW. Yang, J. Chem. Phys. 139, 224105 (2013)]. So far Hartree-Fock and approximated density-functional orbitals have been utilized to evaluate the pp-RPA equation. In this paper, to further explore the fundamentals and the potential use of pairing matrix dependent functionals, we present the linear-response time-dependent density-functional theory with pairing fields with both adiabatic and frequency-dependent kernels. This theory is related to the density-functional theory and time-dependent density-functional theory for superconductors, but is applied to normal non-superconducting systems for our purpose. Due to the lack of the proof of the one-to-one mapping between the pairing matrix and the pairing field for time-dependent systems, the linear-response theory is established based on the representability assumption of the pairing matrix. The linear response theory justifies the use of approximated densityfunctionals in the pp-RPA equation. This work sets the fundamentals for future density-functional development to enhance the description of ground state correlation energies and N ± 2 excitation energies.
机译:粒子-粒子随机相位近似(pp-RPA)的最新发展拓宽了基态相关能量的视野[H. van Aggelen,Y。Yang和W. Yang,物理学。 Rev.A 88,030501(2013),Y.Yang,H.van Aggelen,S.N.Steinmann,D.Peng和W.杨建化学物理139,174110(2013); D. Peng,S。N. Steinmann,H。van Aggelen和W. Yang,J. Chem。物理139,104112(2013)]和N±2激发能[Y. Yang,H。van Aggelen和W.杨建化学物理139,224105(2013)]。到目前为止,已经利用Hartree-Fock和近似密度函数轨道来评估pp-RPA方程。在本文中,为进一步探讨配对矩阵相关功能的基础和潜在用途,我们提出了具有绝热和频率相关核的配对场的线性响应时间相关密度函数理论。该理论与超导体的密度泛函理论和随时间变化的密度泛函理论有关,但出于我们的目的,该理论已应用于正常的非超导系统。由于缺乏时变系统的配对矩阵与配对场之间的一对一映射的证明,因此基于配对矩阵的可表示性假设建立了线性响应理论。线性响应理论证明了在pp-RPA方程中使用近似密度泛函的合理性。这项工作为未来密度函数的发展奠定了基础,以增强对基态相关能和N±2激发能的描述。

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