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Solitary waves of α-helix propagation in media with arbitrary inhomogeneities

机译:α-螺旋在具有任意不均匀性的介质中传播的孤波

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We study the dynamics of solitary waves in α-helical proteins going beyond the standard nearest-neighbour interaction by taking into account influence long-range dipole-dipole interactions of the Kac-Baker type. By means of the coherent state representation of operators, the model Hamiltonian is transformed into a pair of classical lattice equations, which is further reduced to a sole nonlinear Schr?dinger (NLS) equation using the continuum approximation of which the dispersive coefficient depends on the long-range interactions (LRI) parameter. It comes out from our results that the bright-like solitons, solitary waves which govern the energy transfer in α-helix, are deeply influenced by the LRI. At the end, we transform the NLS equation for more currently-important inhomogeneous NLS models in media with inhomogeneities. Application of this transformation to two example models is illustrated and soliton-like solutions are also graphically discussed.
机译:我们通过考虑影响Kac-Baker型的长距离偶极-偶极相互作用,研究了超出标准最近邻相互作用的α-螺旋蛋白中孤波的动力学。通过算符的相干状态表示,将哈密顿量模型转换为一对经典晶格方程,然后使用其连续性逼近将其进一步简化为唯一的非线性薛定ding(NLS)方程,其色散系数取决于远程交互(LRI)参数。从我们的结果可以看出,LRI对明亮的孤子(支配α螺旋中的能量转移的孤波)产生了深远的影响。最后,我们在非均质介质中将NLS方程转换为当前更重要的非均质NLS模型。说明了将此转换应用于两个示例模型的过程,并以图形方式讨论了类孤子解决方案。

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