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How do different tokenizers perform on downstream tasks in scriptio continua languages?: A case study in Japanese
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This paper investigates the effect of tokenizers on the downstream performance of pretrained language models (PLMs) in scriptio continua languages where no explicit spaces exist between words, using Japanese as a case study. The tokenizer for such languages often consists of a morphological analyzer and a subword tokenizer, requiring us to conduct a comprehensive study of all possible pairs. However, previous studies lack this comprehensiveness. We therefore train extensive sets of tokenizers, build a PLM using each, and measure the downstream performance on a wide range of tasks. Our results demonstrate that each downstream task has a different optimal morphological analyzer, and that it is better to use Byte-Pair-Encoding or Unigram rather than WordPiece as a subword tokenizer, regardless of the type of task.
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Thunder-Tok: Minimizing Tokens per Word in Tokenizing Korean Texts for Generative Language Models
Thunder-Tok, a Korean tokenizer with grammar-based pre-tokenization and branching-entropy vocabulary selection, cuts tokens per word by about 10% versus BPE while keeping downstream performance comparable.
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