Physics – Condensed Matter
Scientific paper
1999-10-13
Phys. Rev. B 61, R11906 (2000)
Physics
Condensed Matter
4 pages, 2 eps figures
Scientific paper
10.1103/PhysRevB.61.R11906
We study moving periodic structures in presence of correlated disorder using renormalisation group. We find that the effect of disorder persists at all velocities resulting at zero temperature in a Moving Bose Glass phase with transverse pinning. At non zero temperature we find two distinct moving glass phases. We predict a sharp transition, as velocity increases between the Moving Bose Glass, where the transverse Meissner effect persists in the direction transverse to motion and a Correlated Moving Glass at high velocity, where it disappears. Experimental consequences for vortex lattices and charge density wave (CDW) systems are discussed.
Chauve Pascal
Doussal Pierre Le
Giamarchi Thierry
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