Autoencoder-Driven Clustering of Intersecting D-brane Models via Tadpole Charge
Abstract
We study the well-known type IIA intersecting D-brane models on the orientifold via a machine-learning approach. We apply several autoencoder models with and without positional encoding to the D6-brane configurations satisfying certain concrete models described in arXiv:hep-th/0510170 and attempt to extract some features which the configurations possess. We observe that the configurations cluster in two-dimensional latent layers of the autoencoder models and analyze which physical quantities are relevant to the clustering. As a result, it is found that tadpole charges of hidden D6-branes characterize the clustering. We expect that there is another important factor because a checkerboard pattern in two-dimensional latent layers is observed in the clustering.
Keywords
Cite
@article{arxiv.2312.07181,
title = {Autoencoder-Driven Clustering of Intersecting D-brane Models via Tadpole Charge},
author = {Keiya Ishiguro and Satsuki Nishimura and Hajime Otsuka},
journal= {arXiv preprint arXiv:2312.07181},
year = {2023}
}
Comments
41 pages, 57 figures