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On systems having Poincare and Galileo symmetry

机译:在具有Poincare和Galileo对称的系统上

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Using the wave equation in d >= 1 space dimensions it is illustrated how dynamical equations may be simultaneously Poincare and Galileo covariant with respect to different sets of independent variables. This provides a method to obtain dynamics-dependent representations of the kinematical symmetries. When the field is a displacement function both symmetries have a physical interpretation. For d = 1 the Lorentz structure is utilized to reveal hitherto unnoticed features of the non-relativistic Chaplygin gas including a relativistic structure with a limiting case that exhibits the Carroll group, and field-dependent symmetries and associated Noether charges. The Lorentz transformations of the potentials naturally associated with the Chaplygin system are given. These results prompt the search for further symmetries and it is shown that the Chaplygin equations support a nonlinear superposition principle. A known spacetime mixing symmetry is shown to decompose into label-time and superposition symmetries. It is shown that a quantum mechanical system in a stationary state behaves as a Chaplygin gas. The extension to d > 1 is used to illustrate how the physical significance of the dual symmetries is contingent on the context by showing that Maxwell's equations exhibit an exact Galileo covariant formulation where Lorentz and gauge transformations are represented by field-dependent symmetries. A natural conceptual and formal framework is provided by the Lagrangian and Eulerian pictures of continuum mechanics. (C) 2014 Elsevier Inc. All rights reserved.
机译:使用D> = 1空间尺寸的波动方程,示出了动态方程如何同时可以同时相对于不同的独立变量集合的庞纳罗和伽利略协会。这提供了一种获取动态对称的动态依赖表示的方法。当字段是位移函数时,两个对称性都有物理解释。对于D = 1,Lorentz结构用于揭示迄今为止的非相对论Chaplygin气体的不受影动量的特征,包括相对论的结构,其具有克罗罗族的限制性壳体,以及现场依赖性对称和相关的肿瘤电荷。给出了与Chaplygin系统自然相关的电位的Lorentz转换。这些结果提示搜索进一步的对称性,并显示Chaplygin等式支持非线性叠加原理。显示了已知的时空混合对称性被分解为标签时间和叠加对称。结果表明,静止状态的量子机械系统表现为Chaplygin气体。用于D> 1的延伸用于说明双对称性的物理意义如何在上下文上取决于上下文,通过表示Maxwell的等式表现出精确的伽利略协调性配方,其中Lorentz和仪表变换由现场依赖的对称表示。 Lagrangian和Continuum Mechanics的欧拉郡图片提供了自然概念和正式框架。 (c)2014年elsevier Inc.保留所有权利。

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