TY - JOUR
T1 - Analysis of optical absorption spectra of transition metal cluster ions by the spin-polarized DV-Xα method
AU - Minemoto, Shinichirou
AU - Takahashi, Kazutaka
AU - Matsumoto, Jun
AU - Iseda, Masako
AU - Terasaki, Akira
AU - Imoto, Hideo
AU - Kondow, Tamotsu
PY - 1997/1/1
Y1 - 1997/1/1
N2 - Optical absorption spectra of cobalt cluster ions, Co+n, and vanadium cluster ions, V+n, were analyzed by a theoretical calculation based on the spin-polarized DV-Xα method, and their electronic and geometric structures were obtained. Relative absorption cross section associated with each electronic transition was calculated; the calculation enables a qualitative comparison of calculated spectrum with a measured one not only in its transition energy but also in its intensity profile. This analysis shows that Co+4, Co+3, and V+4 have, respectively, a tetrahedral structure with a bond distance of 2.00 Å, an equilateral triangle with a bond distance of 2.30 Å, and a distorted tetrahedral structure with five bonds having a distance of 2.34 Å and one of 2.89 Å. The differences in the population between majority and minority spins (spin-difference) evaluated from the electronic structure thus obtained were 2.0, 1.7, and zero per atom in Co+3, Co+4, and V+4, respectively. These spin differences indicate a ferromagnetic and an antiferromagnetic spin-coupling in the cobalt and vanadium cluster ions, respectively.
AB - Optical absorption spectra of cobalt cluster ions, Co+n, and vanadium cluster ions, V+n, were analyzed by a theoretical calculation based on the spin-polarized DV-Xα method, and their electronic and geometric structures were obtained. Relative absorption cross section associated with each electronic transition was calculated; the calculation enables a qualitative comparison of calculated spectrum with a measured one not only in its transition energy but also in its intensity profile. This analysis shows that Co+4, Co+3, and V+4 have, respectively, a tetrahedral structure with a bond distance of 2.00 Å, an equilateral triangle with a bond distance of 2.30 Å, and a distorted tetrahedral structure with five bonds having a distance of 2.34 Å and one of 2.89 Å. The differences in the population between majority and minority spins (spin-difference) evaluated from the electronic structure thus obtained were 2.0, 1.7, and zero per atom in Co+3, Co+4, and V+4, respectively. These spin differences indicate a ferromagnetic and an antiferromagnetic spin-coupling in the cobalt and vanadium cluster ions, respectively.
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U2 - 10.1007/s004600050147
DO - 10.1007/s004600050147
M3 - Article
AN - SCOPUS:0005595596
SN - 1434-6060
VL - 40
SP - 13
EP - 16
JO - European Physical Journal D
JF - European Physical Journal D
IS - 1
ER -