Publication | Open Access
Long-Lived Self-Entanglements in Ring Polymers
41
Citations
36
References
2019
Year
EngineeringMany-body Quantum PhysicLong-lived Self-entanglementsCircular MoleculesMolecular BiologyPolymersPolymer MaterialQuantum EntanglementDna ComputingBiophysicsPolymer ChemistryQuantum SciencePhysicsChain EntanglementsNatural SciencesSelf-assemblyPolymer ScienceElectric FieldsMacromolecular System
The entanglement of ring polymers remains mysterious in many aspects. In this Letter, we use electric fields to induce self-entanglements in circular DNA molecules, which serve as a minimal system for studying chain entanglements. We show that self-threadings give rise to entanglements in ring polymers and can slow down polymer dynamics significantly. We find that strongly entangled circular molecules remain kinetically arrested in a compact state for very long times, thereby providing experimental evidence for the severe topological constraints imposed by threadings.
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