Lie-Hamilton systems associated with the symplectic Lie algebra sp(6, R)
Abstract
New classes of Lie-Hamilton systems are obtained from the six-dimensional fundamental representation of the symplectic Lie algebra sp(6,R). The ansatz is based on a recently proposed procedure for constructing higher-dimensional Lie-Hamilton systems through the representation theory of Lie algebras. As applications of the procedure, we study a time-dependent electromagnetic field and several types of coupled oscillators. The irreducible embedding of the special unitary Lie algebra su(3) into sp(6, R) is also considered, yielding Lie-Hamilton systems arising from the sum of the quark and antiquark three-dimensional representations of su(3), which are applied in the construction of t-dependent coupled systems. In addition, t-independent constants of the motion are obtained explicitly for all these Lie-Hamilton systems, which allows the derivation of a nonlinear superposition rule
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