TY - JOUR
T1 - Parameter-Free Calculation of Response Functions in Time-Dependent Density-Functional Theory
AU - Sottile, Francesco
AU - Olevano, Valerio
AU - Reining, Lucia
PY - 2003/7/31
Y1 - 2003/7/31
N2 - We have established and implemented a fully ab initio method which allows one to calculate optical absorption spectra, including excitonic effects, without solving the cumbersome Bethe-Salpeter equation, but obtaining results of the same precision. This breakthrough has been achieved in the framework of time-dependent density-functional theory, using new exchange-correlation kernels [Formula presented] that are free of any empirical parameter. We show that the same excitonic effects in the optical spectra can be reproduced through different [Formula presented]’s, ranging from frequency-dependent ones to a static one, by varying the kernel’s spatial degrees of freedom. This indicates that the key quantity is not [Formula presented], but [Formula presented] combined with a response function. We present results for the optical absorption of bulk Si and SiC in good agreement with experiment, almost indistinguishable from those of the Bethe-Salpeter approach.
AB - We have established and implemented a fully ab initio method which allows one to calculate optical absorption spectra, including excitonic effects, without solving the cumbersome Bethe-Salpeter equation, but obtaining results of the same precision. This breakthrough has been achieved in the framework of time-dependent density-functional theory, using new exchange-correlation kernels [Formula presented] that are free of any empirical parameter. We show that the same excitonic effects in the optical spectra can be reproduced through different [Formula presented]’s, ranging from frequency-dependent ones to a static one, by varying the kernel’s spatial degrees of freedom. This indicates that the key quantity is not [Formula presented], but [Formula presented] combined with a response function. We present results for the optical absorption of bulk Si and SiC in good agreement with experiment, almost indistinguishable from those of the Bethe-Salpeter approach.
U2 - 10.1103/PhysRevLett.91.056402
DO - 10.1103/PhysRevLett.91.056402
M3 - Article
AN - SCOPUS:84891817898
SN - 0031-9007
VL - 91
JO - Physical Review Letters
JF - Physical Review Letters
IS - 5
ER -