arXiv · cond-mat/9604171
Field-driven topological glass transition in a model flux line lattice
Abstract
We show that the flux line lattice in a model layered HTSC becomes unstable above a critical magnetic field with respect to a plastic deformation via penetration of pairs of point-like disclination defects. The instability is characterized by the competition between the elastic and the pinning energies and is essentially assisted by softening of the lattice induced by a dimensional crossover of the fluctuations as field increases. We confirm through a computer simulation that this indeed may lead to a phase transition from crystalline order at low fields to a topologically disordered phase at higher fields. We propose that this mechanism provides a model of the low temperature field--driven disordering transition observed in neutron diffraction experiments on ${\rm Bi_2Sr_2CaCu_2O_8\, }$ single crystals.
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Seungoh Ryu, A. Kapitulnik, S. Doniach. 1996-04-29. Field-driven topological glass transition in a model flux line lattice. https://doi.org/10.1103/physrevlett.77.2300
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