Two dimensional Coulomb gas in a non-conservative trap
Two dimensional Coulomb gas in a non-conservative trap
We study the nonequilibrium steady state of a two dimensional Coulomb gas under the action of an anisotropic harmonic trapping potential along with a non-conservative rotational force. In the case without rotation, the equilibrium (zero temperature) steady state has a uniform density supported over a a static elliptical droplet. The addition of a rotational force drives the system into a nonequilibrium steady state where the density is still uniform inside an ellipse, but the ellipse gets tilted by a a fixed angle compared to the non-rotational case. In addition, a nonzero current is generated inside the droplet which run concentrically to the droplet boundary. For large rotational force, the droplet develops a purely circular form. Our results are predicted by a simple hydrodynamic calculation and are confirmed by numerical simulations and provide a full understanding of a novel driven non-equilibrium state in a strongly interacting system.
David S. Dean、Rashed Aljasmi、Satya N. Majumdar
物理学
David S. Dean,Rashed Aljasmi,Satya N. Majumdar.Two dimensional Coulomb gas in a non-conservative trap[EB/OL].(2025-06-23)[2025-07-22].https://arxiv.org/abs/2506.18551.点此复制
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