Spin-Lattice Relaxation in Some Rare-Earth Salts. I. Temperature Dependence

Abstract
We report measurements of the spin-lattice relaxation rate T11 for several magnetically dilute rare-earth ions in the temperature range 1.2°T5°K, using the transient recovery of the microwave paramagnetic resonance in the frequency range 8ν18 Gc/sec. Data are given for Sm3+ and Dy3+ in the double nitrate La2 Mg2 (NO3)12.24H2O; for Pr3+, Sm3+, and Er3+ in the ethyl sulfate La(C2H5SO4)3.9H2O; and for Ce3+, Nd3+, Pr3+, Sm3+, Er3+, and Tb3+ in the ethyl sulfate Y(C2H5SO4)3.9H2O. We observe the temperature dependence for the direct process T11T; for the Orbach process T11exp(ΔT); and for the Raman process T11T7 or T9. The magnitudes of the processes are in reasonable agreement with simple theoretical estimates. The observed rates are shown to be independent of paramagnetic ion concentration in the range 0.1 to 1%. For Pr in the ethyl sulfate, we observe, as expected, a phonon bottleneck rate Tb1T2 rather than the direct process. In several cases the Orbach process determines a previously unknown value of the crystal-field splitting Δ, while in some cases it shows that the value of Δ in the dilute salt is significantly different from the value determined optically in the concentrated salt.