Mixing, segregation, and collapse transitions of interacting copolymer rings
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arXiv
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| Hauptverfasser: | , , , |
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| Format: | Preprint |
| Veröffentlicht: |
2025
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| _version_ | 1866913036119310336 |
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| author | van Rensburg, EJ Janse Orlandini, E Tesi, MC Whittington, SG |
| author_facet | van Rensburg, EJ Janse Orlandini, E Tesi, MC Whittington, SG |
| contents | A system of two self and mutual interacting ring polymers, close together in space, can display several competing equilibrium phases and phase transitions. Using Monte Carlo simulations and combinatorial arguments on a corresponding lattice model, we determine three equilibrium phases, two in which the rings segregate in space and are either extended (the segregated-expanded phase) or compact (the segregated-collapsed phase). The third is a mixed phase where the rings interpenetrate. The corresponding phase boundaries are located numerically and their critical nature is discussed. Finally, by looking at the topological properties of the three phases, we show that the two rings are likely to be linked in the mixed phase and knotted in the segregated-collapsed phase. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2512_24303 |
| institution | arXiv |
| publishDate | 2025 |
| record_format | arxiv |
| spellingShingle | Mixing, segregation, and collapse transitions of interacting copolymer rings van Rensburg, EJ Janse Orlandini, E Tesi, MC Whittington, SG Soft Condensed Matter 82B41, 82B27, 82D60 A system of two self and mutual interacting ring polymers, close together in space, can display several competing equilibrium phases and phase transitions. Using Monte Carlo simulations and combinatorial arguments on a corresponding lattice model, we determine three equilibrium phases, two in which the rings segregate in space and are either extended (the segregated-expanded phase) or compact (the segregated-collapsed phase). The third is a mixed phase where the rings interpenetrate. The corresponding phase boundaries are located numerically and their critical nature is discussed. Finally, by looking at the topological properties of the three phases, we show that the two rings are likely to be linked in the mixed phase and knotted in the segregated-collapsed phase. |
| title | Mixing, segregation, and collapse transitions of interacting copolymer rings |
| topic | Soft Condensed Matter 82B41, 82B27, 82D60 |
| url | https://arxiv.org/abs/2512.24303 |