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首页> 外文期刊>Physics of the solid state >Generation of Phase Nuclei by Solitons of the New 'Undulator' Type in Martensitic Phase Transitions of Crystalline Materials
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Generation of Phase Nuclei by Solitons of the New 'Undulator' Type in Martensitic Phase Transitions of Crystalline Materials

机译:新型“起伏”型孤子在晶体材料马氏体相变中生成相核

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摘要

The microdynamics of large-amplitude nonlinear lattice vibrations of plutonium and uranium materials has been investigated at high reactor temperatures in the ranges of martensitic phase transitions. Topologically new large-amplitude solitons of the "undulator" type have been revealed. Transverse and lon- gitudinal "undulator" solitons in crystals with hexagonal and cubic symmetry, depending on the direction of motion, have different kinematic and amplitude characteristics, which differ from the characteristics of the previously known solitons. The transverse "undulator" solitons, like electrons in undulators, are observed with periodic atomic displacements orthogonal to the direction of soliton propagation. The longitudinal "undulator" solitons with displacements of atoms in the direction of soliton propagation are characterized by periodic delays with two-step velocities on the trajectory in a certain analogy with two-period engineering undulator devices. It has been shown that, at high energies, such "undulator" solitons of two types generate nuclei of a new phase in early stages of structural phase transitions.
机译:已经在马氏体相变范围内的高反应堆温度下研究了and和铀材料的大幅度非线性晶格振动的微观动力学。揭示了“起伏器”类型的拓扑新的大振幅孤子。具有六边形和三次方对称性的晶体中的横向和纵向“起伏”孤子具有不同的运动学和振幅特性,这与先前已知的孤子的特性不同,视运动的方向而定。观察到横向“起伏器”孤子,就像起伏器中的电子一样,具有垂直于孤子传播方向的周期性原子位移。沿原子在孤子传播方向上位移的纵向“起伏器”孤子的特征是,在一定程度上类似于两周期工程起伏器装置,其轨迹上具有两步速度的周期性延迟。已经表明,在高能量下,这种两种类型的“起伏”孤子在结构相变的早期阶段产生新相的核。

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