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An alternative approach to systems of second-order ordinary differential equations with maximal symmetry. Realizations of sl(n+2, R) by special functions

机译:具有最大对称性的二阶常微分方程组的一种替代方法。 sl(n + 2,R)的特殊功能实现

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Using the general solution of the differential equation x (Over dot)(t) + g(1)(t)x (Over dot) + g(2)(t)x - 0, a generic basis of the point-symmetry algebra sl(3, R) is constructed. Deriving the equation from a time-dependent Lagrangian, the basis elements corresponding to Noether symmetries are deduced. The generalized Lewis invariant is constructed explicitly using a linear combination of Noether symmetries. The procedure is generalized to the case of systems of second-order ordinary differential equations with maximal sl(n + 2,R)-symmetry, and its possible adaptation to the inhomogeneous non-linear case illustrated by an example. (C) 2016 Elsevier B.V. All rights reserved.
机译:使用微分方程x(上点)(t)+ g(1)(t)x(上点)+ g(2)(t)x-0的一般解,这是点对称代数的一般基础sl(3,R)被构造。从时间相关的拉格朗日方程推导方程,推导对应于Noether对称性的基本元素。广义的Lewis不变量是使用Noether对称性的线性组合显式构造的。该过程被推广到具有最大sl(n + 2,R)对称性的二阶常微分方程组的情况,并且该过程可能适用于一个例子说明的非均匀非线性情况。 (C)2016 Elsevier B.V.保留所有权利。

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