Flux-line dynamics inYBa2Cu4O8fromY89NMR

Abstract
Measurements of the Y89 NMR linewidth Δν and spin-lattice relaxation rate T11 have been performed in an oriented powder sample of YBa2 Cu4 O8 (Tc = 81 K) for both H0c and H0c at H0 = 9.4 and 5.9 T. Evidence for the effects of thermal motion of flux lines (FL’s) below Tc is presented and the microscopic correlation times of the FL motion are derived by using a simple model. From the temperature and field dependence of T11 an effective correlation time τe describing the pseudodiffusion of two-dimensional (2D) pancake vortices is extracted. The effective activation energy of the FL motion is found to be inversely proportional to the magnetic field, supporting the similar conclusion recently obtained in HgBa2 CuO4+δ. From the temperature dependence of Δν another correlation time τ, different from τe, is obtained. It is argued that the correlation times derived from Δν and T11, respectively, refer to different motional regimes below and above the irreversibility temperature Tirr. © 1996 The American Physical Society.