Universality class of interacting directed single- and double-strand homopolymers

This work examines a field theory for directed homopolymers in a good solvent. The field theory is based on a lattice model for single- and double-strand polymers with length variables, direction-dependent pairing energy and interactions. As for the less explicit O(n)-symmetric model, there is a clo...

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Veröffentlicht in:The European physical journal. E, Soft matter and biological physics Soft matter and biological physics, 2024-11, Vol.47 (11), p.66, Article 66
1. Verfasser: Dengler, Richard
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Sprache:eng
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Zusammenfassung:This work examines a field theory for directed homopolymers in a good solvent. The field theory is based on a lattice model for single- and double-strand polymers with length variables, direction-dependent pairing energy and interactions. As for the less explicit O(n)-symmetric model, there is a close relation to the conventional one-component branched polymer and the associated Lee-Yang problem. We derive results in the limiting cases of nearly complete denaturation and nearly complete renaturation. The single-strand critical exponent ν φ is calculated in two-loop order. A plausible physical realization is RNA molecules with a periodic base sequence like AUAU.
ISSN:1292-8941
1292-895X
1292-895X
DOI:10.1140/epje/s10189-024-00461-4