Giesbertz K J H, Pernal K, Gritsenko O V, Baerends E J
Theoretical Chemistry, VU University, De Boelelaan 1083, 1081 HV Amsterdam, The Netherlands.
J Chem Phys. 2009 Mar 21;130(11):114104. doi: 10.1063/1.3079821.
Time-dependent density functional theory in its current adiabatic implementations exhibits three striking failures: (a) Totally wrong behavior of the excited state surface along a bond-breaking coordinate, (b) lack of doubly excited configurations, affecting again excited state surfaces, and (c) much too low charge transfer excitation energies. We address these problems with time-dependent density matrix functional theory (TDDMFT). For two-electron systems the exact exchange-correlation functional is known in DMFT, hence exact response equations can be formulated. This affords a study of the performance of TDDMFT in the TDDFT failure cases mentioned (which are all strikingly exhibited by prototype two-electron systems such as dissociating H(2) and HeH(+)). At the same time, adiabatic approximations, which will eventually be necessary, can be tested without being obscured by approximations in the functional. We find the following: (a) In the fully nonadiabatic (omega-dependent, exact) formulation of linear response TDDMFT, it can be shown that linear response (LR)-TDDMFT is able to provide exact excitation energies, in particular, the first order (linear response) formulation does not prohibit the correct representation of doubly excited states; (b) within previously formulated simple adiabatic approximations the bonding-to-antibonding excited state surface as well as charge transfer excitations are described without problems, but not the double excitations; (c) an adiabatic approximation is formulated in which also the double excitations are fully accounted for.
(a) 激发态表面沿键断裂坐标的行为完全错误;(b) 缺乏双激发组态,这再次影响激发态表面;(c) 电荷转移激发能过低。我们用时变密度矩阵泛函理论(TDDMFT)来解决这些问题。对于双电子体系,在密度矩阵泛函理论(DMFT)中精确的交换关联泛函是已知的,因此可以建立精确的响应方程。这使得我们能够研究TDDMFT在上述含时密度泛函理论(TDDFT)失效情形下的性能(这些情形在诸如解离的H₂和HeH⁺等典型双电子体系中都显著表现出来)。同时,可以在不被泛函中的近似所掩盖的情况下测试最终必要的绝热近似。我们发现如下结果:(a) 在线性响应TDDMFT的完全非绝热(与ω相关的、精确的)形式中,可以证明线性响应(LR)-TDDMFT能够提供精确的激发能,特别是一阶(线性响应)形式并不妨碍对双激发态的正确描述;(b) 在先前制定的简单绝热近似下,成键到反键的激发态表面以及电荷转移激发都能毫无问题地得到描述,但双激发不行;(c) 制定了一种绝热近似,其中双激发也能得到充分考虑。