Two-particle scattering in a periodic medium
- Authors: Chuburin Y.P.1
-
Affiliations:
- Physical-Technical Institute, Urals Branch
- Issue: Vol 191, No 2 (2017)
- Pages: 738-751
- Section: Article
- URL: https://journals.rcsi.science/0040-5779/article/view/171229
- DOI: https://doi.org/10.1134/S0040577917050130
- ID: 171229
Cite item
Abstract
We consider a two-particle Schrödinger difference operator with a periodic potential perturbed by an exponentially decaying interaction potential for particles on a one-dimensional lattice. We obtain rigorous results for the two-particle scattering problem in the case of a small interaction and low velocities. Here, as in other quasi-one-dimensional models, small interactions can significantly affect the scattering pattern. In particular, we find the probability that the velocities of two particles in a periodic medium (e.g., they can be ultracold atoms in a one-dimensional optical lattice) change their signs during a collision. This probability increases as the relative velocity decreases and also as the absolute value of the matrix element between single-particle unperturbed Bloch states increases.
About the authors
Yu. P. Chuburin
Physical-Technical Institute, Urals Branch
Author for correspondence.
Email: chuburin@ftiudm.ru
Russian Federation, Izhevsk
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