Effect of fluctuations on vortex lattice structural transitions in superconductors
Abstract
The rhombic-to-square transition field H(T) for cubic and tetragonal materials in fields along [001] is evaluated using the nonlocal London theory with account of thermal vortex fluctuations. Unlike extended Ginzburg-Landau models, our approach shows that the line H(T) and the upper critical field Hc2(T) do not cross due to strong fluctuations near Hc2(T) which suppress the square anisotropy induced by the nonlocality. In increasing fields, this causes re-entrance of the rhombic structure in agreement with recent neutron scattering data on borocarbides.
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