Damped harmonic oscillator revisited: The fastest route to equilibrium

Author:

Lelas Karlo1,Poljak Nikola2,Jukić Dario3

Affiliation:

1. Faculty of Textile Technology, University of Zagreb , Zagreb, Croatia

2. Department of Physics, Faculty of Science, University of Zagreb , Zagreb, Croatia

3. Faculty of Civil Engineering, University of Zagreb , Zagreb, Croatia

Abstract

Theoretically, solutions of the damped harmonic oscillator asymptotically approach equilibrium, i.e., the zero energy state, without ever reaching it exactly, and the critically damped solution approaches equilibrium faster than the underdamped or the overdamped solution. Experimentally, the systems described with this model reach equilibrium when the system's energy has dropped below some threshold corresponding to the energy resolution of the measuring apparatus. We show that one can (almost) always find an optimal underdamped solution that will reach this energy threshold sooner than all other underdamped solutions, as well as the critically damped solution, no matter how small this threshold is. We also comment on one exception to this for a particular type of initial condition, when a specific overdamped solution reaches the equilibrium state sooner than all other solutions. We experimentally confirm some of our findings.

Funder

European Regional Development Fund

Publisher

American Association of Physics Teachers (AAPT)

Subject

General Physics and Astronomy

Reference16 articles.

1. D. J. Morin , <https://scholar.harvard.edu/david-morin/waves> for “ Waves (draft)” (accessed July 19, 2022).

2. A swing of beauty: Pendulums, fluids, forces, and computers;Fluids,2020

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