Matter Coupling of Dirac Matter in the Context of the SYK Model: Non-Gaussian Random Couplings and Bulk Mass Deformations

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Hauptverfasser: Lau, Pak Hang Chris, Ma, Chen-Te, Murugan, Jeff, Tezuka, Masaki
Format: Preprint
Veröffentlicht: 2025
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author Lau, Pak Hang Chris
Ma, Chen-Te
Murugan, Jeff
Tezuka, Masaki
author_facet Lau, Pak Hang Chris
Ma, Chen-Te
Murugan, Jeff
Tezuka, Masaki
contents We elaborate further on the matter coupling of Dirac matter in the SYK framework, incorporating non-Gaussian coupling distributions and bulk fermion mass effects. Our study analyzes quartic matter couplings generated by a non-Gaussian distribution as an illustrative example. The introduction of bulk-fermion mass alters the boundary coupling between the Dirac and Majorana fermions. The averaged adjacent gap ratio is sensitive to the distribution of random couplings, which remains independent of the Hamiltonian's symmetry. The generalization of the SYK model to non-Gaussian distributions and the inclusion of bulk fermion mass remain qualitatively similar to the Gaussian and massless cases. Key deviations are observed only in the time scales for the linear ramp in the spectral form factor and the saturation of entanglement entropy.
format Preprint
id arxiv_https___arxiv_org_abs_2507_09919
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Matter Coupling of Dirac Matter in the Context of the SYK Model: Non-Gaussian Random Couplings and Bulk Mass Deformations
Lau, Pak Hang Chris
Ma, Chen-Te
Murugan, Jeff
Tezuka, Masaki
High Energy Physics - Theory
We elaborate further on the matter coupling of Dirac matter in the SYK framework, incorporating non-Gaussian coupling distributions and bulk fermion mass effects. Our study analyzes quartic matter couplings generated by a non-Gaussian distribution as an illustrative example. The introduction of bulk-fermion mass alters the boundary coupling between the Dirac and Majorana fermions. The averaged adjacent gap ratio is sensitive to the distribution of random couplings, which remains independent of the Hamiltonian's symmetry. The generalization of the SYK model to non-Gaussian distributions and the inclusion of bulk fermion mass remain qualitatively similar to the Gaussian and massless cases. Key deviations are observed only in the time scales for the linear ramp in the spectral form factor and the saturation of entanglement entropy.
title Matter Coupling of Dirac Matter in the Context of the SYK Model: Non-Gaussian Random Couplings and Bulk Mass Deformations
topic High Energy Physics - Theory
url https://arxiv.org/abs/2507.09919