Neural Proof Nets
September 26, 2020 ยท Declared Dead ยท ๐ Conference on Computational Natural Language Learning
"No code URL or promise found in abstract"
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Authors
Konstantinos Kogkalidis, Michael Moortgat, Richard Moot
arXiv ID
2009.12702
Category
cs.CL: Computation & Language
Cross-listed
cs.LG,
cs.LO
Citations
12
Venue
Conference on Computational Natural Language Learning
Last Checked
5 months ago
Abstract
Linear logic and the linear ฮป-calculus have a long standing tradition in the study of natural language form and meaning. Among the proof calculi of linear logic, proof nets are of particular interest, offering an attractive geometric representation of derivations that is unburdened by the bureaucratic complications of conventional prooftheoretic formats. Building on recent advances in set-theoretic learning, we propose a neural variant of proof nets based on Sinkhorn networks, which allows us to translate parsing as the problem of extracting syntactic primitives and permuting them into alignment. Our methodology induces a batch-efficient, end-to-end differentiable architecture that actualizes a formally grounded yet highly efficient neuro-symbolic parser. We test our approach on รThel, a dataset of type-logical derivations for written Dutch, where it manages to correctly transcribe raw text sentences into proofs and terms of the linear ฮป-calculus with an accuracy of as high as 70%.
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