Swollen-Collapsed Transition in Random Hetero-Polymers
arXiv:cond-mat/9804098 · doi:10.1007/s100510050527
Abstract
A lattice model of a hetero-polymer with random hydrophilic-hydrophobic charges interacting with the solvent is introduced, whose continnuum counterpart has been proposed by T. Garel, L. Leibler and H. Orland {J. Phys. II France 4, 2139 (1994)]. The transfer matrix technique is used to study various constrained annealed systems which approximate at various degrees of accuracy the original quenched model. For highly hydrophobic chains an ordinary -point transition is found from a high temperature swollen phase to a low temperature compact phase. Depending on the type of constrained averages, at very low temperatures a swollen phase or a coexistence between compact and swollen phases are found. The results are carefully compared with the corresponding ones obtained in the continuum limit, and various improvements in the original calculations are discussed.
13 pages, 8 figures; revised version with minor changes, accepted for publication in European Physical Journal B
Cited by in corpus (4)
- A possible mechanism for cold denaturation of proteins at high pressure
- Lattice model for cold and warm swelling of polymers in water
- Exactness of the Annealed and the Replica Symmetric Approximations for Random Heteropolymers
- Test of cold denaturation mechanism for proteins as a function of water's structure