Damping and modification of the multiquanta Davydov-like solitons in molecular chains

Slobodan Zeković, Zoran Ivić
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引用次数: 6

Abstract

Relaxation of the multivibron soliton in molecular chain on lattice vibrations is investigated within the simple microscopic model. It was shown that its dynamics is governed by the nonlinear Schrödinger equation containing damping term. Its appearance is the consequence of the emission and absorption of real phonons arising when soliton velocity approaches the phase speed of sound. Explicit time dependence of the soliton parameters results as a consequence of these perturbations. In particular, soliton amplitude decreases while its width increases.

分子链中多量子类davydov孤子的阻尼和修饰
用简单微观模型研究了分子链中多振子孤子在晶格振动下的弛豫。结果表明,它的动力学是由包含阻尼项的非线性Schrödinger方程控制的。它的出现是孤子速度接近声速时实声子的发射和吸收的结果。孤子参数的显式时间依赖性是这些扰动的结果。特别是孤子振幅随宽度的增大而减小。
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