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Tracing the Development of the Virtual Particle Concept Using Semantic Change Detection

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arxiv 2410.16855 v1 pith:FNNUIFP2 submitted 2024-10-22 cs.CL physics.hist-ph

classification cs.CLphysics.hist-ph
keywords virtualmetricsparticleresearchsciencetheychangeconcept
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Virtual particles are peculiar objects. They figure prominently in much of theoretical and experimental research in elementary particle physics. But exactly what they are is far from obvious. In particular, to what extent they should be considered "real" remains a matter of controversy in philosophy of science. Also their origin and development has only recently come into focus of scholarship in the history of science. In this study, we propose using the intriguing case of virtual particles to discuss the efficacy of Semantic Change Detection (SCD) based on contextualized word embeddings from a domain-adapted BERT model in studying specific scientific concepts. We find that the SCD metrics align well with qualitative research insights in the history and philosophy of science, as well as with the results obtained from Dependency Parsing to determine the frequency and connotations of the term "virtual." Still, the metrics of SCD provide additional insights over and above the qualitative research and the Dependency Parsing. Among other things, the metrics suggest that the concept of the virtual particle became more stable after 1950 but at the same time also more polysemous.

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Cited by 3 Pith papers

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

  1. Trajectories of Change: Approaches for Tracking Knowledge Evolution

    cs.CL 2024-12 conditional novelty 5.0 of 10

    A computational framework combining Kullback-Leibler divergence and embedding density estimation traces individual scholars' language against disciplinary knowledge evolution in 20th-century general relativity research.

  2. Astro-HEP-BERT: A bidirectional language model for studying the meanings of concepts in astrophysics and high energy physics

    cs.CL 2024-11 conditional novelty 5.0 of 10

    This paper introduces Astro-HEP-BERT, a BERT model adapted to astrophysics and high-energy physics text, plus a large arXiv-based corpus, as a low-cost tool for studying conceptual change in science.

  3. Meaning at the Planck scale? Contextualized word embeddings for doing history, philosophy, and sociology of science

    cs.CL 2024-11 conditional novelty 5.0 of 10

    Domain-adapted BERT models distinguish senses of 'Planck' better than general models, and reveal the rise of the Planck mission meaning in physics papers.

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