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Relativistic non-Hamiltonian mechanics

机译:相对论性非哈密顿力学

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Relativistic particle subjected to a general four-force is considered as a nonholonomic system. The nonholonomic constraint in four-dimensional space-time represents the relativistic invariance by the equation for four-velocity u_μu~μ+c~2=0, where c is the speed of light in vacuum. In the general case, four-forces are non-potential, and the relativistic particle is a non-Hamiltonian system in four-dimensional pseudo-Euclidean space-time. We consider non-Hamiltonian and dissipative systems in relativistic mechanics. Covariant forms of the principle of stationary action and the Hamilton's principle for relativistic mechanics of non-Hamiltonian systems are discussed. The equivalence of these principles is considered for relativistic particles subjected to potential and non-potential forces. We note that the equations of motion which follow from the Hamilton's principle are not equivalent to the equations which follow from the variational principle of stationary action. The Hamilton's principle and the principle of stationary action are not compatible in the case of systems with nonholonomic constraint and the potential forces. The principle of stationary action for relativistic particle subjected to non-potential forces can be used if the Helmholtz conditions are satisfied. The Hamilton's principle and the principle of stationary action are equivalent only for a special class of relativistic non-Hamiltonian systems.
机译:相对论粒子受到一般的四作用力被认为是非完整系统。二维时空的非完整约束通过四速度u_μu〜μ+ c〜2 = 0的方程表示相对论不变性,其中c是真空中的光速。在一般情况下,在四元拟欧几里德时空中,四力是非势力,而相对论质点是非哈密顿系统。我们在相对论力学中考虑非哈密顿系统和耗散系统。讨论了稳态作用原理的协变形式和非哈密顿系统相对论力学的哈密顿原理。这些原理的等效性考虑了相对论粒子所承受的势力和非势力。我们注意到,遵循汉密尔顿原理的运动方程不等同于遵循静止作用的变分原理的运动方程。在具有非完整约束和势力的系统中,汉密尔顿原理和固定作用原理不兼容。如果满足亥姆霍兹条件,则可以使用相对论粒子在非势力作用下的平稳作用原理。汉密尔顿原理和平稳作用原理仅对于一类相对论的非哈密顿系统是等效的。

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