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Quantum Natural Language Generation on Near-Term Devices

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arxiv 2211.00727 v1 pith:ITFZFMIG submitted 2022-11-01 quant-ph cs.CL

classification quant-phcs.CL
keywords generationquantumalgorithmsentenceapplicationsbeencomputingdevices
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The emergence of noisy medium-scale quantum devices has led to proof-of-concept applications for quantum computing in various domains. Examples include Natural Language Processing (NLP) where sentence classification experiments have been carried out, as well as procedural generation, where tasks such as geopolitical map creation, and image manipulation have been performed. We explore applications at the intersection of these two areas by designing a hybrid quantum-classical algorithm for sentence generation. Our algorithm is based on the well-known simulated annealing technique for combinatorial optimisation. An implementation is provided and used to demonstrate successful sentence generation on both simulated and real quantum hardware. A variant of our algorithm can also be used for music generation. This paper aims to be self-contained, introducing all the necessary background on NLP and quantum computing along the way.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Procedural Generation and Games at the Dawn of Fault Tolerant Quantum Computing

    quant-ph 2025-08 unverdicted novelty 3.0 of 10

    A vision paper arguing procedural content generation is a promising early application of fault-tolerant quantum computing, illustrated by a game concept that uses a quantum algorithm for the Jones polynomial.

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