A Graph-Based Classical and Quantum Approach to Deterministic L-System Inference

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Authors Ali Lotfi, Ian McQuillan, Steven Rayan arXiv ID 2411.19906 Category quant-ph: Quantum Computing Cross-listed cs.CL, cs.DS, cs.FL, cs.LG Citations 0 Last Checked 5 months ago
Abstract
L-systems can be made to model and create simulations of many biological processes, such as plant development. Finding an L-system for a given process is typically solved by hand, by experts, in a massively time-consuming process. It would be significant if this could be done automatically from data, such as from sequences of images. In this paper, we are interested in inferring a particular type of L-system, deterministic context-free L-system (D0L-system) from a sequence of strings. We introduce the characteristic graph of a sequence of strings, which we then utilize to translate our problem (inferring D0L-systems) in polynomial time into the maximum independent set problem (MIS) and the SAT problem. After that, we offer a classical exact algorithm and an approximate quantum algorithm for the problem.
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