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Soliton patterns and breakup thresholds in hydrogen-bonded chains

机译:氢键链中的孤子模式和破裂阈值

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The dynamics of protons in hydrogen-bonded quasi one-dimensional networks are studied using a diatomic lattice model of protons and heavy ions including a phi(4) on-site substrate potential. It is shows that the model with linear and nonlinear coupling of the quartic type between lattice sites for the protons admits a richer dynamics that cannot be produced with linear couplings alone. Depending on two types of physical boundary conditions, namely of the drop or condensate type, and on conditions requiring the presence of linear and nonlinear dispersion terms, soliton patterns of compact support, whether with a peak, drop, bell, cusp, shock, kink, bubble or loop structure, are obtained within a continuum approximation. Phase trajectories as well as analytical studies provide information on the disintegration of soliton patterns upon reaching some critical values of the lattice parameters. The total energies of soliton patterns are computed exactly in the continuum limit. We also show that when anharmonic interactions of the phonon are taken into account, the width and energy of soliton patterns are in qualitative agreement with experimental data.
机译:使用质子和重离子包括phi(4)现场衬底电势的双原子晶格模型研究氢键合准一维网络中质子的动力学。结果表明,质子晶格位置之间具有四次线性和非线性耦合的模型,可以接受仅凭线性耦合无法产生的更丰富的动力学。取决于两种类型的物理边界条件,即液滴或冷凝物类型,以及需要存在线性和非线性色散项的条件,紧密支撑的孤子模式,无论具有峰,滴,钟形,尖峰,冲击,扭结在连续近似中获得气泡或环状结构。当达到晶格参数的某些临界值时,相轨迹和分析研究可提供有关孤子图形解体的信息。孤子图形的总能量在连续极限内精确计算。我们还表明,当考虑到声子的非谐相互作用时,孤子图形的宽度和能量与实验数据在质量上是一致的。

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