Adiabatic dynamics of one-dimensional classical Hamiltonian dissipative systems |
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Authors: | G.M. Pritula E.V. Petrenko O.V. Usatenko |
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Affiliation: | 1. A.Ya. Usikov Institute for Radiophysics and Electronics, Ukrainian Academy of Science, 12 Proskura Street, 61085 Kharkov, Ukraine;2. V.N. Karazin Kharkiv National University, 4 Freedom Square, 61077, Kharkiv, Ukraine |
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Abstract: | A linearized plane pendulum with the slowly varying mass and length of string and the suspension point moving at a slowly varying speed is presented as an example of a simple 1D mechanical system described by the generalized harmonic oscillator equation, which is a basic model in discussion of the adiabatic dynamics and geometric phase. The expression for the pendulum geometric phase is obtained by three different methods. The pendulum is shown to be canonically equivalent to the damped harmonic oscillator. This supports the mathematical conclusion, not widely accepted in physical community, of no difference between the dissipative and Hamiltonian 1D systems. |
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Keywords: | Adiabatic dynamics Geometric phase Lagrangian and Hamiltonian mechanics Dissipative systems |
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