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Statistical field theory for dialectology.

James Burridge1

  • 1University of Portsmouth, School of Mathematics and Physics, Portsmouth, Hampshire P01 2UP, United Kingdom.

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Summary
This summary is machine-generated.

A new statistical field theory models language evolution using physics principles. It explains linguistic patterns and predicts future changes, offering insights into dialect region dynamics.

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Area of Science:

  • Computational Linguistics
  • Statistical Physics
  • Sociolinguistics

Background:

  • Existing models lack the spatial-temporal detail to track historical linguistic changes at the feature level.
  • There's a need for a principled mechanism to predict future language evolution.
  • Statistical physics offers promising approaches but requires a comprehensive model.

Purpose of the Study:

  • To develop a "physics of language" capable of explaining and predicting linguistic patterns.
  • To introduce a statistical field theory for linguistic variable evolution.
  • To provide a model that matches historical changes and predicts future shifts.

Main Methods:

  • Representing linguistic variant frequencies as a stochastic state field with spatial and social interactions.
  • Coupling the state field to a latent bias field using Onsager-Machlup action to minimize data overfitting.
  • Deriving parameter inference procedures and applying them to 20th-century US dialect survey data.

Main Results:

  • The statistical field theory successfully models linguistic variant frequencies and their evolution.
  • The model's bias field exhibits a characteristic half-life, defining the predictability horizon for linguistic change.
  • Inferred parameters suggest surface-tension-driven coarsening of dialect regions influenced by population density gradients.

Conclusions:

  • The developed statistical field theory provides a novel framework for understanding language evolution.
  • The model offers a principled mechanism for predicting future linguistic changes.
  • The findings reveal insights into dialect region dynamics and the forces shaping linguistic interfaces.