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portfolio
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publications
Stripe correlations in the two-dimensional Hubbard-Holstein model
Published in Communications Physics, 2022
Recommended citation: S. Karakuzu, A. Tanjaroon Ly, P. Mai, J. Neuhaus, T.A. Maier, S. Johnston. "Stripe correlations in the two-dimensional Hubbard-Holstein model." Physical Review B. 5, 311 (2022)
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Comparative determinant quantum Monte Carlo study of the acoustic and optical variants of the Su-Schrieffer-Heeger model
Published in Physical Review B, 2023
Recommended citation: S.M. Costa, B. Cohen-Stead, A. Tanjaroon Ly, J. Neuhaus, S. Johnston. "Comparative determinant quantum Monte Carlo study of the acoustic and optical variants of the Su-Schrieffer-Heeger model." Physical Review B. 108, 165138 (2023)
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Comparative study of the superconductivity in the Holstein and optical Su-Schrieffer-Heeger models
Published in Physical Review B, 2023
Recommended citation: A. Tanjaroon Ly, B. Cohen-Stead, S.M. Costa, S. Johnston. "Comparative study of the superconductivity in the Holstein and optical Su-Schrieffer-Heeger models." Physical Review B. 108, 184501 (2023)
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SmoQyDQMC.jl: A flexible implementation of determinant quantum Monte Carlo for Hubbard and electron-phonon interactions
Published in SciPost Physics Codebases, 2024
Recommended citation: B. Cohen-Stead, S.M. Costa, J. Neuhaus, A. Tanjaroon Ly, Y. Zhang, R. Scalettar, K. Barros, S. Johnston. "SmoQyDQMC.jl: A flexible implementation of determinant quantum Monte Carlo for Hubbard and electron-phonon interactions." SciPost Physics Codebases. 29 (2024)
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Antiferromagnetic and bond‑order‑wave phases in the two‑dimensional optical Su‑Schrieffer‑Heeger‑Hubbard model
Published in Physical Review B, 2025
Recommended citation: A. Tanjaroon Ly, B. Cohen-Stead, S. Johnston. "Antiferromagnetic and bond‑order‑wave phases in the two‑dimensional optical Su‑Schrieffer‑Heeger‑Hubbard model." Physical Review B. 111, 245138 (2025)
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talks
Static stripes in the two‑dimensional Hubbard‑Holstein model
Published:
Several state-of-the-art numerical methods have observed static and fluctuating spin and charge stripes in doped two-dimensional Hubbard models, suggesting that these orders significantly shape the cuprate phase diagram. Many experiments, however, also indicate that the cuprates have strong electron-phonon (e-ph) coupling, and it is unclear how this interactioninfluences stripe correlations. We study static and fluctuating stripe order in the doped Hubbard-Holstein model using zero temperature variational Monte Carlo and finite temperature determinant quantum Monte Carlo. We find that the lattice couples more strongly with the charge component of the stripes, leading to an enhancement or suppression of stripe correlations, depending on model parameters like the next-nearest-neighbor hopping t′. Our results help elucidate how the e-ph interaction can tip the delicate balance between stripe and superconducting correlations in the Hubbard-Holstein model with implications for our understanding of the high-Tc cuprates.
Comparative Quantum Monte Carlo studies of the two-dimensional bond Su-Schrieffer-Heeger and Holstein models
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teaching
Teaching experience 1
Undergraduate course, University 1, Department, 2014
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Teaching experience 2
Workshop, University 1, Department, 2015
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