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Double excitations in finite systems

Academic Article
Publication Date:
2009
abstract:
Time-dependent density-functional theory (TDDFT) is widely used in the study of linear response properties of finite systems. However, there are difficulties in properly describing excited states, which have double- and higher-excitation characters, which are particularly important in molecules with an open-shell ground state. These states would be described if the exact TDDFT kernel were used; however, within the adiabatic approximation to the exchange-correlation (xc) kernel, the calculated excitation energies have a strict single-excitation character and are fewer than the real ones. A frequency-dependent xc kernel could create extra poles in the response function, which would describe states with a multiple-excitation character. We introduce a frequency-dependent xc kernel, which can reproduce, within TDDFT, double excitations in finite systems. In order to achieve this, we use the Bethe-Salpeter equation with a dynamically screened Coulomb interaction W(omega), which can describe these excitations, and from this we obtain the xc kernel. Using a two-electron model system, we show that the frequency dependence of W does indeed introduce the double excitations that are instead absent in any static approximation of the electron-hole screening.
Iris type:
01.01 Articolo in rivista
Keywords:
density functional theory; excited states; ground states
List of contributors:
Sangalli, Davide
Authors of the University:
SANGALLI DAVIDE
Handle:
https://iris.cnr.it/handle/20.500.14243/410025
Published in:
THE JOURNAL OF CHEMICAL PHYSICS
Journal
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