Exact Bethe ansatz spectrum of a tight-binding chain with dephasing noise
arXiv:1606.09122 · doi:10.1103/PhysRevLett.117.137202
Abstract
We construct an exact map between a tight-binding model on any bipartite lattice in presence of dephasing noise and a Hubbard model with imaginary interaction strength. In one dimension, the exact many-body Liouvillian spectrum can be obtained by application of the Bethe ansatz method. We find that both the non-equilibrium steady state and the leading decay modes describing the relaxation at late times are related to the eta-pairing symmetry of the Hubbard model. We show that there is a remarkable relation between the time-evolution of an arbitrary k-point correlation function in the dissipative system and k-particle states of the corresponding Hubbard model.
5 pages, 1 figure. Version accepted to Phys. Rev. Lett