Relativistic coupled-cluster-based linear response theory for ionization potentials of alkali-metal and alkaline-earth-metal atoms

Chaudhuri, Rajat K. ; Panda, Prafulla K. ; Das, B. P. ; Mahapatra, Uttam Sinha ; Mukherjee, D. (1999) Relativistic coupled-cluster-based linear response theory for ionization potentials of alkali-metal and alkaline-earth-metal atoms Physical Review A, 60 (1). pp. 246-252. ISSN 1050-2947

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Official URL: http://link.aps.org/doi/10.1103/PhysRevA.60.246

Related URL: http://dx.doi.org/10.1103/PhysRevA.60.246

Abstract

We have developed and applied the relativistic coupled-cluster-based linear response theory (RCCLRT) for computing the principal as well as the shake-up ionization potentials (IP's) of Li, Be, Na, and Mg where the single-particle orbitals are generated by solving the relativistic Hartree-Fock-Roothaan equations using the Gaussian basis functions on a grid. The computed principal and shake-up ionization energies by the RCCLRT approach are in favorable agreement with the experimental results. Since for the (one-valence) IP problem, there is a formal equivalence between the principal IP values as obtained from the CCLRT and those obtained as eigenvalues of the multireference coupled-cluster theory, the computed quantities are fully size extensive. The approach via the RCCLRT has the additional advantage of providing the shake-up IP's as well. These are, however, not fully size extensive, but the error scales as the number of valence excitations (2h-1p), so the inextensivity error is rather small.

Item Type:Article
Source:Copyright of this article belongs to American Physical Society.
ID Code:21867
Deposited On:23 Nov 2010 13:05
Last Modified:17 May 2016 06:01

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