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home [2025/03/01 01:33]
statphys
home [2026/09/04 21:07] (current)
statphys
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 == Research Interests == == Research Interests ==
-Complex SystemsStatistical Physics, Network Theory, Systems Biology+Complex Systems ​and Statistical Physics
  
 == Publications == == Publications ==
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 == Papers == == Papers ==
-  - J. Choi, K. Lee, D.-H. Lee, B. Min, and T.-S. Chon, Spatially explicit population modeling with habitat preferential movement of Glis glis (Edible dormouse), submitted (2025). +  ​- H. Jang, B. Min, and M. San Miguel, The role of fixed links in coevolving voter models, in preparation (2026); 
-  - J. Choi, B. Min, and TGalla, [[https://arxiv.org/abs/2502.14696 ​|Analysis ​of a voter model with an evolving number of opinion states]], submitted ​(2025); [[https://​arxiv.org/​abs/​2502.14696 | arXiv:2502.14696]] +  - H. Jang, B. Min, and G. Bianconi, [[https://​arxiv.org/​abs/​2608.25560 | (k,n)-core percolation on hypergraphs with anchor nodes]], submitted (2026); [[https://​arxiv.org/​abs/​2608.25560| arXiv:​2608.25560]] 
-  - B. Min and M. San Miguel, [[https://arxiv.org/abs/2502.03597| Aging in coevolving voter models]], ​submitted ​(2025); [[https://​arxiv.org/​abs/​2502.03597 |arXiv:​2502.03597]] +  - M. Yang, R. Laubenbacher,​ and B. Min, [[http://​arxiv.org/​abs/​2608.25562| Giant strongly biconnected components of directed networks: a generating function approach]], submitted (2026); [[http://​arxiv.org/​abs/​2608.25562| arXiv:​2608.25562]] 
-  - J. Kim, D.-S. Lee, B. Min, M. A. Porter, M. San Miguel, and K.-I. Goh, [[https://arxiv.org/abs/2407.11261| Competition between group interactions and nonlinearity in voter dynamics on hypergraphs]], ​submitted ​(2025); [[https://​arxiv.org/​abs/​2407.11261 |arXiv:​2407.11261]] +  - F. Battiston, M. Frasca, J. Gomez-Gardenes,​ B. Min, F. Radicchi, A. Santoro, and V. Latora, [[https://​arxiv.org/​abs/​2605.04199|Dynamical processes and emergent behaviors in multiplex networks]], submitted (2026); [[https://​arxiv.org/​abs/​2605.04199| arXiv:​2605.04199]] 
-  - B. Min, E.-K. Park, S.-H. Gwak, and K.-I. Goh, [[https://​www.sciencedirect.com/​science/​article/​pii/​S0960077924005563| No-exclaves percolation on random networks]], Chaos, Solitons and Fractals184, 115004 (2024); [[http://​arxiv.org/​abs/​2402.03689 |arXiv:​2402.03689]]+  - H. Jang, G. Bianconi, and B. Min, [[https://​arxiv.org/​abs/​2603.22089| Feedback percolation on complex networks]], submitted (2026); [[https://​arxiv.org/​abs/​2603.22089| arXiv:​2603.22089]] 
 +  ​- J. Choi, K. Lee, D.-H. Lee, B. Min, and T.-S. Chon, [[https://​arxiv.org| ​Spatially explicit population modeling with habitat preferential movement of Glis glis (Edible dormouse)]], submitted (2026); [[https://​arxiv.org/​abs/​2504.03104| arXiv:​2504.03104]] 
 +  - B. Min, J. Choi, and RLaubenbacher, [[https://pubs.aip.org/aip/cha/​article-abstract/​36/​2/​023142/​3380900/​Dynamics-of-attractor-transitions-in-Boolean ​Dynamics ​of attractor transitions in Boolean networks under noise]], Chaos 36, 023142 ​(2026); [[https://​arxiv.org/​abs/​2506.15581 | arXiv:2506.15581]] 
 +  - B. Min and M. San Miguel, [[https://www.sciencedirect.com/​science/​article/abs/pii/​S0960077925003571| Aging in coevolving voter models]], ​Chaos, Solitons and Fractals 196, 116344 ​(2025); [[https://​arxiv.org/​abs/​2502.03597 |arXiv:​2502.03597]] 
 +  - J. Choi, B. Min, and T. Galla, [[https://​journals.aps.org/​pre/​abstract/​10.1103/​382x-g9xk |Analysis of a voter model with an evolving number of opinion states]], Phys. Rev. E 111, 064303 (2025); [[https://​arxiv.org/​abs/​2502.14696 | arXiv:​2502.14696]] 
 +  - J. Kim, D.-S. Lee, B. Min, M. A. Porter, M. San Miguel, and K.-I. Goh, [[https://link.aps.org/doi/10.1103/​PhysRevE.111.L052301| Competition between group interactions and nonlinearity in voter dynamics on hypergraphs]], ​Phys. Rev. E 111, L052301 ​(2025); [[https://​arxiv.org/​abs/​2407.11261 |arXiv:​2407.11261]] 
 +  - B. Min, E.-K. Park, S.-H. Gwak, and K.-I. Goh, [[https://​www.sciencedirect.com/​science/​article/​pii/​S0960077924005563| No-exclaves percolation on random networks]], Chaos, Solitons and Fractals 184, 115004 (2024); [[http://​arxiv.org/​abs/​2402.03689 |arXiv:​2402.03689]]
   - B. Min, [[https://​www.frontiersin.org/​articles/​10.3389/​fcpxs.2023.1298265/​abstract|Coevolutionary dynamics of group interactions:​ coevolving nonlinear voter models]], Front. Complex Syst. 1, 1298265 (2023); [[https://​arxiv.org/​abs/​2311.05882 |arXiv:​2311.05882]]   - B. Min, [[https://​www.frontiersin.org/​articles/​10.3389/​fcpxs.2023.1298265/​abstract|Coevolutionary dynamics of group interactions:​ coevolving nonlinear voter models]], Front. Complex Syst. 1, 1298265 (2023); [[https://​arxiv.org/​abs/​2311.05882 |arXiv:​2311.05882]]
   - J. Choi and B. Min, [[https://​www.npsm-kps.org/​journal/​view.html?​uid=7727| Coevolutionary dynamics of information spreading and heterophilic link rewiring]], New Phys.: Sae Mulli 73(10), 886 (2023); [[https://​arxiv.org/​abs/​2309.07490 |arXiv:​2309.07490]]   - J. Choi and B. Min, [[https://​www.npsm-kps.org/​journal/​view.html?​uid=7727| Coevolutionary dynamics of information spreading and heterophilic link rewiring]], New Phys.: Sae Mulli 73(10), 886 (2023); [[https://​arxiv.org/​abs/​2309.07490 |arXiv:​2309.07490]]
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   - B. Min and M. San Miguel, [[https://​www.nature.com/​articles/​s41598-018-32643-4| Competition and dual users in complex contagion processes]],​ Sci. Rep. 8, 14580 (2018); [[https://​arxiv.org/​abs/​1801.09464|arXiv:​1801.09464]]   - B. Min and M. San Miguel, [[https://​www.nature.com/​articles/​s41598-018-32643-4| Competition and dual users in complex contagion processes]],​ Sci. Rep. 8, 14580 (2018); [[https://​arxiv.org/​abs/​1801.09464|arXiv:​1801.09464]]
   - B. Min and M. San Miguel, [[https://​www.nature.com/​articles/​s41598-018-28615-3| Competing contagion processes: complex contagion triggered by simple contagion]],​ Sci. Rep. 8, 10422 (2018); [[https://​arxiv.org/​abs/​1712.05059|arXiv:​1712.05059]]   - B. Min and M. San Miguel, [[https://​www.nature.com/​articles/​s41598-018-28615-3| Competing contagion processes: complex contagion triggered by simple contagion]],​ Sci. Rep. 8, 10422 (2018); [[https://​arxiv.org/​abs/​1712.05059|arXiv:​1712.05059]]
-  - G. Del Ferraro, ​et al., B. Min (3rd)et al., [[https://​www.nature.com/​articles/​s41467-018-04718-3|Finding influential nodes for integration in brain networks using optimal percolation theory]], Nat. Commun. 9, 2274 (2018); [[https://​arxiv.org/​abs/​1806.07903|arXiv:​1806.07903]]+  - G. Del Ferraro, ​AMoreno, B. Min, FMorone, U, Perez-Ramirez,​ L. Perez-Cervera,​ L. C. Parra, A. Holodny, S. Canals, and H. A. Makse, [[https://​www.nature.com/​articles/​s41467-018-04718-3|Finding influential nodes for integration in brain networks using optimal percolation theory]], Nat. Commun. 9, 2274 (2018); [[https://​arxiv.org/​abs/​1806.07903|arXiv:​1806.07903]]
   - B. Min and M. Zheng, [[http://​journals.plos.org/​plosone/​article?​id=10.1371/​journal.pone.0195539|Correlated network of networks enhances robustness against catastrophic failures]], PLoS ONE 13(4), e0195539 (2018); [[https://​arxiv.org/​abs/​1711.05317|arXiv:​1711.05317]]   - B. Min and M. Zheng, [[http://​journals.plos.org/​plosone/​article?​id=10.1371/​journal.pone.0195539|Correlated network of networks enhances robustness against catastrophic failures]], PLoS ONE 13(4), e0195539 (2018); [[https://​arxiv.org/​abs/​1711.05317|arXiv:​1711.05317]]
   - B. Min, [[https://​link.springer.com/​article/​10.1140/​epjb/​e2017-80597-1|Identifying an influential spreader from a single seed in complex networks via a message-passing approach]], Eur. Phys. J. B 91, 18 (2018); [[https://​arxiv.org/​abs/​1710.07064|arXiv:​1710.07064]]   - B. Min, [[https://​link.springer.com/​article/​10.1140/​epjb/​e2017-80597-1|Identifying an influential spreader from a single seed in complex networks via a message-passing approach]], Eur. Phys. J. B 91, 18 (2018); [[https://​arxiv.org/​abs/​1710.07064|arXiv:​1710.07064]]