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2D–3D crossover effects on the vortex-glass phase transition in thin YBa2Cu3O7−δ films

✍ Scribed by P.J.M. Wöltgens; C. Dekker; R.H. Koch; B.W. Hussey; A. Gupta


Publisher
Elsevier Science
Year
1994
Tongue
English
Weight
159 KB
Volume
194-196
Category
Article
ISSN
0921-4526

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✦ Synopsis


Nonlinear current-voltage characteristics have been measured for ultrathin (16-400/~) YBa2Cu3Or_6 films in high magnetic fields. A scaling analysis of these data reveals deviations from the universal vortex-glass critical scaling behavior observed for thick films. This is argued to be a dimensionality effect: At large currents, one probes length scales smaJler than the film thickness, i.e., the three-dimensional (3d) vortex-glass behavior, whereas at low currents the vortex excitations involve typical length scales which exceed the film thickness, hence the 2d behavior is exhibited. Further evidence for this picture is found from the 3d vortex-glass correlation length, which appears to be cut off by the film thickness.


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