Coined Quantum Walks on Weighted Graphs
Abstract
We define a discrete-time, coined quantum walk on weighted graphs that is inspired by Szegedy's quantum walk. Using this, we prove that many lackadaisical quantum walks, where each vertex has integer self-loops, can be generalized to a quantum walk where each vertex has a single self-loop of real-valued weight . We apply this real-valued lackadaisical quantum walk to two problems. First, we analyze it on the line or one-dimensional lattice, showing that it is exactly equivalent to a continuous deformation of the three-state Grover walk with faster ballistic dispersion. Second, we generalize Grover's algorithm, or search on the complete graph, to have a weighted self-loop at each vertex, yielding an improved success probability when .
Cite
@article{arxiv.1703.10134,
title = {Coined Quantum Walks on Weighted Graphs},
author = {Thomas G. Wong},
journal= {arXiv preprint arXiv:1703.10134},
year = {2017}
}
Comments
14 pages, 5 figures