Abstract
We reconsider the old problem of Brownian motion in a homogeneous high-temperature thermal environment. The semiclassical theory implies that the diffusion coefficient does not depend on whether the thermal fluctuations are correlated in space or disordered. We show that the corresponding quantum analysis exhibits a remarkable breakdown of quantum-to-classical correspondence. Explicit results are found for a tight-binding model, within the framework of an Ohmic master equation, where we distinguish between on-site and on-bond dissipators. The breakdown is second order in the inverse temperature and therefore, on the quantitative side, involves an inherent ambiguity that is related to the Ohmic approximation scheme.
Original language | American English |
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Article number | 013141 |
Number of pages | 1 |
Journal | PHYSICAL REVIEW RESEARCH |
Volume | 3 |
Issue number | 1 |
DOIs | |
State | Published - 12 Feb 2021 |
All Science Journal Classification (ASJC) codes
- General Physics and Astronomy