Kinks-Antikinks Dynamics of Nonlinear DNA Molecules
摘要
In this case, it is shown that the kinks created by the local opening of base pairs cause the double helix to curves more readily. Denaturation is the outcome of a quantum phase transition (QPT) brought on by a replenish, and the structural characteristics of DEOXYRIBONUCLEIC ACID may be diagrammed using the Heisenberg spin system when the temperature effect is taken into account during the replenish period. The replenish produces defects like kinks and antikinks, whose densities depend on temperature and replenish time, respectively, and causes the non-equilibrium effect in quantum phase transition. Additionally, local denaturation caused by replenish-induced quantum phase transition is shown to result in the creation of defects like kinks and antikinks, which represent dynamic curvesing of the elastic rod and correlate with axis curves in the DEOXYRIBONUCLEIC ACID molecule. Application of this result to the DEOXYRIBONUCLEIC ACID rod-like-chain (RLC) model is suggested here to result in curves due to these defects. According to this, dynamic kink creation leads to curves development.