The luminescence spectrum of the Os4+ dopant ion occupying O-h sites of the
Cs2GeF6 host shows three sets of resolved transitions in the near-infrared
at approximately 12000, 9000, and 6700 cm(-1), corresponding to intraconfi
gurational transitions between the T-1(2g) lowest excited electronic state
and the Gamma (1), Gamma (4), and Gamma (5)/Gamma (3) spinor levels of the
T-3(1g) ground state, respectively. The octahedral OsF62- chromophore does
not emit from higher excited states, in contrast to related chloride and br
omide host lattices, where several excited states show luminescence. The hi
ghly resolved single-crystal luminescence and absorption spectra are ration
alized with ligand field parameters 10 Dq = 24570 cm(-1), B = 500 cm(-1), C
= 2380 cm(-1), zeta = 3000 cm(-1). Transition intensities reveal an interm
ediate coupling situation for OsF62-: Whereas they generally follow the sel
ection rules derived in the L-S coupling scheme, additional information can
be gained from the j-j coupling limit. The resolved vibronic structure all
ows the identification of the most efficient ungerade parity enabling modes
(vibronic origins) and shows that progressions along the a(1g), e(g), and
t(2g) modes occur for some transitions.