Optical absorption spectra of Pr3+ doped in yttrium pyrogermanate (Y2Ge2O7) crystal

Citation
K. Das et al., Optical absorption spectra of Pr3+ doped in yttrium pyrogermanate (Y2Ge2O7) crystal, J PHYS-COND, 11(7), 1999, pp. 1745-1755
Citations number
54
Categorie Soggetti
Apllied Physucs/Condensed Matter/Materiales Science
Journal title
JOURNAL OF PHYSICS-CONDENSED MATTER
ISSN journal
09538984 → ACNP
Volume
11
Issue
7
Year of publication
1999
Pages
1745 - 1755
Database
ISI
SICI code
0953-8984(19990222)11:7<1745:OASOPD>2.0.ZU;2-N
Abstract
This paper reports the low temperature absorption and Zeeman spectra of Pr3 + doped in yttrium pyrogermanate (YPG), which were studied for the first ti me. In this compound the site symmetry of Pr3+, or the crystal field (CF) s ymmetry, was found to be D-5h, as present in other rare earth pyrogermanate s, and not C-1. The spectral results were analysed by diagonalizing the tot al Hamiltonian consisting of the atomic (electrostatic, spin-orbit and conf iguration interactions) and the CF interactions, in a basis of 91\SLJM(J)] states spanning the entire 4f(2) ground configuration of Pr3+ in the interm ediate coupling formalism, including J-mixing under CE The best fitted free ion and CF parameters obtained were E-1 = 4335.0, E-2 = 23.1, E-3 = 464.0, zeta = 775.0, alpha = 22.9, beta = -674.0, gamma = 1520.0, B-20 = -100, B- 40 = 1650, B-60 = -1600 and B-65 = -1000 (all in cm(-1)). Using these param eters the thermal characteristics of molar magnetic susceptibilities (K-par allel to, K-perpendicular to), their anisotropy Delta K = +/-(K-parallel to - K-perpendicular to) and the Schottky specific heat (C-Sch) of Pr3+ in YP G were calculated. It was found that the calculated values of K-parallel to > K perpendicular to. between 300 and 152 K (T-i) but on cooling further K -perpendicular to > K-parallel to was observed, i.e, the sign of Delta K wa s reversed below T-i. The calculated values of C-Sch exhibited a sharp peak at 24 K and a broad maximum at 156 K. These characteristics were similar t o other Pr3+ compounds studied earlier.