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Vortex Solid-Liquid Transition in Bi2Sr2CaCu2O8+δ with a High Density of Strong Pins

S. Colson, C. J. van der Beek, M. Konczykowski, M. B. Gaifullin, Y. Matsuda, P. Gierlowski, Ming Li, P. H. Kes

cond-mat.supr-conarXiv:cond-mat/0401281

Abstract

The introduction of a large density of columnar defects in %underdoped Bi2Sr2CaCu2O8+δ crystals does not, at sufficiently low vortex densities, increase the irreversibility line beyond the first order transition (FOT) field of pristine crystals. At such low fields, the flux line wandering length rw behaves as in pristine %Bi2Sr2CaCu2O8+δ crystals. Next, vortex positional correlations along the c--axis in the vortex Bose glass at fields above the FOT are smaller than in the low--field vortex solid. Third, the Bose-glass-to-vortex liquid transition is signaled by a rapid decrease in c-axis phase correlations. These observations are understood in terms of the ``discrete superconductor'' model.

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