Bubble Formation in Helicoidal DNA Molecules

Conrad Bertr, Tabi
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引用次数: 1

Abstract

Wave interaction is addressed the framework of the helicoidal Peyrard-Bishop model of DNA. The model is first reduced to a set of coupled nonlinear Schrodinger equations via the multiple scale expansion. Modulational instability analysis shows that multi-breather trains exist in large regions of instability, while trains of one-humped breathers are observed for the single excitation mode. Analytical solutions are proposed, where single modes are proposed to described DNA respiration and coupled waves rather describe the bubbles observed in experiments. These bubbles are shown to be more effective under weak helicoidal coupling. The process of strand separation is also discussed. PACS number(s): 87.14.E-, 87.15.H-, 05.45.Yv, 05.45.-a
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螺旋DNA分子中的气泡形成
波的相互作用是解决了DNA的螺旋佩拉德-毕晓普模型的框架。首先通过多尺度展开将模型简化为一组耦合的非线性薛定谔方程。调制不稳定性分析表明,在大的不稳定区域存在多呼吸机序列,而在单激励模式下存在单峰呼吸机序列。提出了解析解,其中提出了单模式来描述DNA呼吸和耦合波而不是描述实验中观察到的气泡。这些气泡在弱螺旋耦合下更有效。还讨论了链分离的过程。PACS数值:87.14。E-, 87.15.h -, 05.45。青年志愿,05.45.-a
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