Complexity-Theoretic Aspects of Expanding Cellular Automata
Abstract
The expanding cellular automata (XCA) variant of cellular automata is investigated and characterized from a complexity-theoretical standpoint. An XCA is a one-dimensional cellular automaton which can dynamically create new cells between existing ones. The respective polynomial-time complexity class is shown to coincide with , that is, the class of decision problems polynomial-time truth-table reducible to problems in . An alternative characterization based on a variant of non-deterministic Turing machines is also given. In addition, corollaries on select XCA variants are proven: XCAs with multiple accept and reject states are shown to be polynomial-time equivalent to the original XCA model. Finally, XCAs with alternative acceptance conditions are considered and classified in terms of and the Turing machine polynomial-time class .
Keywords
Cite
@article{arxiv.1902.05487,
title = {Complexity-Theoretic Aspects of Expanding Cellular Automata},
author = {Augusto Modanese},
journal= {arXiv preprint arXiv:1902.05487},
year = {2021}
}
Comments
19 pages, 3 figures