Frozen Disorder in a Driven System

Physics – Condensed Matter

Scientific paper

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5 pages RevTex. Uses multicol.sty. Accepted for publication in PRL

Scientific paper

10.1103/PhysRevLett.77.3581

We investigate the effects of quenched disorder on the universal properties of a randomly driven Ising lattice gas. The Hamiltonian fixed point of the pure system becomes unstable in the presence of a quenched local bias, giving rise to a new fixed point which controls a novel universality class. We determine the associated scaling forms of correlation and response functions, quoting critical exponents to two-loop order in an expansion around the upper critical dimension d$_c=5$.

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