Anomalous transport in long-ranged open quantum systems
Abstract
We consider a one-dimensional fermionic lattice system with long-ranged power-law decaying hopping with exponent . The system is further subjected to dephasing noise in the bulk. We investigate two variants of the problem: (i) an open quantum system where the setup is further subjected to boundary reservoirs enabling the scenario of a non-equilibrium steady state charge transport, and (ii) time dynamics of an initially localized single particle excitation in the absence of boundary reservoirs. In both variants, anomalous super-diffusive behavior is observed for , and for the setup is effectively short-ranged and exhibits conventional diffusive transport. Our findings are supported by analytical calculations based on the multiple-scale analysis technique that leads to the emergence of a fractional diffusion equation for the density profile. Our study unravels an interesting interplay between long-range interaction and dephasing mechanism that could result in the emergence of unconventional behaviour in open quantum systems.
Cite
@article{arxiv.2406.00768,
title = {Anomalous transport in long-ranged open quantum systems},
author = {Abhinav Dhawan and Katha Ganguly and Manas Kulkarni and Bijay Kumar Agarwalla},
journal= {arXiv preprint arXiv:2406.00768},
year = {2024}
}
Comments
9 pages, 3 figures