Huygens’ clocks revisited

Author:

Willms Allan R.1ORCID,Kitanov Petko M.2,Langford William F.1

Affiliation:

1. Department of Mathematics and Statistics, University of Guelph, Guelph Ontario, Canada N1G 2W1

2. Department of Mathematics and Statistics, University of Ottawa, Ottawa Ontario K1N 6N5

Abstract

In 1665, Huygens observed that two identical pendulum clocks, weakly coupled through a heavy beam, soon synchronized with the same period and amplitude but with the two pendula swinging in opposite directions. This behaviour is now called anti-phase synchronization. This paper presents an analysis of the behaviour of a large class of coupled identical oscillators, including Huygens' clocks, using methods of equivariant bifurcation theory. The equivariant normal form for such systems is developed and the possible solutions are characterized. The transformation of the physical system parameters to the normal form parameters is given explicitly and applied to the physical values appropriate for Huygens' clocks, and to those of more recent studies. It is shown that Huygens' physical system could only exhibit anti-phase motion, explaining why Huygens observed exclusively this. By contrast, some more recent researchers have observed in-phase or other more complicated motion in their own experimental systems. Here, it is explained which physical characteristics of these systems allow for the existence of these other types of stable solutions. The present analysis not only accounts for these previously observed solutions in a unified framework, but also introduces behaviour not classified by other authors, such as a synchronized toroidal breather and a chaotic toroidal breather.

Funder

Natural Sciences and Engineering Research Council of Canada

Publisher

The Royal Society

Subject

Multidisciplinary

Reference53 articles.

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