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Transfer-matrix approach to the Blume-Capel model on the triangular lattice

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Author(s)
Mataragkas, DimitriosVasilopoulos, AlexandrosFytas, Nikolaos G.Kim, Dong-Hee
Type
Article
Citation
PHYSICAL REVIEW RESEARCH, v.7, no.3, pp.033240
Issued Date
2025-09
Abstract
We investigate the spin-1 Blume-Capel model on an infinite strip of the triangular lattice using the transfermatrix method combined with a sparse-matrix factorization technique. Through finite-size scaling analysis of numerically exact spectra for strip widths up to L = 19, we accurately locate the tricritical point improving upon recent Monte Carlo estimates. In the first-order regime, we observe exponential scaling of the spectral gap, reflecting the linear growth of interfacial tension as the temperature decreases below the tricritical point. Finally, we validate our tricritical point estimate through precise agreement with conformal field theory predictions for the tricritical Ising universality class. Our results underscore the continued utility of the transfer-matrix approach for studying phase transitions in complex lattice models.
Publisher
AMER PHYSICAL SOC
ISSN
2643-1564
DOI
10.1103/jfl3-f4kd
URI
https://scholar.gist.ac.kr/handle/local/33476
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