arXiv · cond-mat/9511058
Phase ordering kinetics of the Bose gas
Abstract
We study the approach to equilibrium of a Bose gas to a superfluid state. We point out that dynamic scaling, characteristic of far from equilibrium phase-ordering systems, should hold. We stress the importance of a non-dissipative Josephson precession term in driving the system to a new universality class. A model of coarsening in dimension $d=2$, involving a quench between two temperatures below the equilibrium superfluid transition temperature ($T_c$), is exactly solved and demonstrates the relevance of the Josephson term. Numerical results on quenches from above $T_c$ in $d=2,3$ provide evidence for the scaling picture postulated.
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Kedar Damle, Satya Majumdar, Subir Sachdev. 1996-03-28. Phase ordering kinetics of the Bose gas. https://doi.org/10.1103/physreva.54.5037
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