Controlled dynamics of a multi-component discrete-time quantum walker
摘要
We investigate a discrete-time quantum walk of a three-component quantum particle on a one-dimensional lattice. As coin operators, we employ parameterized rotations generated by the Gell-Mann matrices, which enable systematic tuning of the couplings between the internal components. We analyze how these couplings influence and control the dynamics by systematically exploring the position-space probability distribution across a broad region of the parameter space. To quantify the impact of different inter-component couplings, we further examine the ratio of the mean position to the variance in each half of the lattice. Our results indicates that the system supports a rich variety of transport regimes, ranging from nearly symmetric, rapidly spreading walks to strongly anisotropic dynamics with partial localization. This framework thus provides a new avenue for engineering targeted spreading and trapping behavior in multicomponent discrete-time quantum walks.
引用
@article{arxiv.2608.13161,
title = {Controlled dynamics of a multi-component discrete-time quantum walker},
author = {Vikash Mittal and Tomasz Sowiński},
journal= {arXiv preprint arXiv:2608.13161},
year = {2026}
}
备注
8 pages + 4 figures