Force signature of the unzipping transition for strip confined two-dimensional polymers
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Publication:4600911
DOI10.1088/1751-8121/aa9105zbMath1386.82078OpenAlexW2761284817MaRDI QIDQ4600911
Andrew Rechnitzer, Aleksander L. Owczarek
Publication date: 18 January 2018
Published in: Journal of Physics A: Mathematical and Theoretical (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1088/1751-8121/aa9105
Related Items (2)
Exact solution of pulled, directed vesicles with sticky walls in two dimensions ⋮ Exact solution of directed walk models of polymeric zipping with pulling in two and three dimensions
Cites Work
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- Poland-Scheraga models and the DNA denaturation transition
- Confining multiple polymers between sticky walls: a directed walk model of two polymers
- Stretching of a chain polymer adsorbed at a surface
- An exact solution of three interacting friendly walks in the bulk
- Motzkin path models of long chain polymers in slits
- The expected number of inversions after n adjacent transpositions
- Exact enumeration and Monte Carlo results for self-avoiding walks in a slab
- Effect of Confinement: Polygons in Strips, Slabs and Rectangles
- Adsorption of a directed polymer subject to an elongational force
- Mechanical denaturation of DNA: existence of a low-temperature denaturation
- Exact solution of two friendly walks above a sticky wall with single and double interactions
- A directed walk model of a long chain polymer in a slit with attractive walls
- Self-avoiding polygons and walks in slits
- An exact solution of two friendly interacting directed walks near a sticky wall
- Finite-size scaling functions for directed polymers confined between attracting walls
- Self-avoiding walks in a slab with attractive walls
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