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- Title
Spatial search on Johnson graphs by continuous-time quantum walk.
- Authors
Tanaka, Hajime; Sabri, Mohamed; Portugal, Renato
- Abstract
Spatial search on graphs is one of the most important algorithmic applications of quantum walks. To show that a quantum-walk-based search is more efficient than a random-walk-based search is a difficult problem, which has been addressed in several ways. Usually, graph symmetries aid in the calculation of the algorithm's computational complexity, and Johnson graphs are an interesting class regarding symmetries because they are regular, Hamilton-connected, vertex- and distance-transitive. In this work, we show that spatial search on Johnson graphs by continuous-time quantum walk achieves the Grover lower bound π N / 2 with success probability 1 asymptotically for every fixed diameter, where N is the number of vertices. The proof is mathematically rigorous and can be used for other graph classes.
- Subjects
QUANTUM graph theory; COMPUTATIONAL complexity; CHARTS, diagrams, etc.; HAMILTONIAN graph theory; WALKING
- Publication
Quantum Information Processing, 2022, Vol 21, Issue 2, p1
- ISSN
1570-0755
- Publication type
Article
- DOI
10.1007/s11128-022-03417-9