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The antisymmetry of distortions

机译:扭曲的反对称性

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Distortions are ubiquitous in nature. Under perturbations such as stresses, fields or other changes, a physical system reconfigures by following a path from one state to another; this path, often a collection of atomic trajectories, describes a distortion. Here we introduce an antisymmetry operation called distortion reversal that reverses a distortion pathway. The symmetry of a distortion pathway is then uniquely defined by a distortion group; it has the same form as a magnetic group that involves time reversal. Given its isomorphism to magnetic groups, distortion groups could have a commensurate impact in the study of distortions, as the magnetic groups have had in the study of magnetic structures. Distortion symmetry has important implications for a range of phenomena such as structural and electronic phase transitions, diffusion, molecular conformational changes, vibrations, reaction pathways and interface dynamics.
机译:失真在自然界无处不在。在压力,场或其他变化等扰动下,物理系统会按照从一种状态到另一种状态的路径进行重新配置。这条路径通常是原子轨迹的集合,描述了一种畸变。在这里,我们介绍了一种称为失真逆转的反对称操作,它可以逆转失真路径。失真路径的对称性然后由一个失真组唯一定义。它具有与涉及时间反转的磁性基团相同的形式。鉴于其与磁性基团的同构性,畸变基团在畸变的研究中可能会产生同等的影响,就像磁性基团在磁性结构的研究中一样。畸变对称性对一系列现象具有重要意义,例如结构和电子相变,扩散,分子构象变化,振动,反应路径和界面动力学。

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