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Abstract
We present a Lyapunov centre theorem for an antisymplectically reversible Hamiltonian system exhibiting a nondegenerate 1 : 1 or 1:-1 semisimple resonance as a detuning parameter is varied. The system can be finite- or infinite-dimensional (and quasilinear) and have a non-constant symplectic structure. We allow the origin to be a ‘trivial’ eigenvalue arising from a translational symmetry or, in an infinite-dimensional setting, to lie in the continuous spectrum of the linearised Hamiltonian vector field provided a compatibility condition on its range is satisfied. As an application, we show how Kirchgässner’s spatial dynamics approach can be used to construct doubly periodic travelling waves on the surface of a three-dimensional body of water (of finite or infinite depth) beneath a thin ice sheet (‘hydroelastic waves’). The hydrodynamic problem is formulated as a reversible Hamiltonian system in which an arbitrary horizontal spatial direction is the time-like variable, and the infinite-dimensional phase space consists of wave profiles which are periodic (with fixed period) in a second, different horizontal direction. Applying our Lyapunov centre theorem at a point in parameter space associated with a 1 : 1 or 1:-1 semisimple resonance yields a periodic solution of the spatial Hamiltonian system corresponding to a doubly periodic hydroelastic wave.
| Original language | English |
|---|---|
| Article number | 104 |
| Journal | Journal of Nonlinear Science |
| Volume | 34 |
| Issue number | 6 |
| DOIs | |
| Publication status | Published - 2024 Dec |
Subject classification (UKÄ)
- Mathematical Analysis
Free keywords
- 35Q35
- 37K50
- 76B15
- Doubly periodic waves
- Hydroelastic waves
- Lyapunov centre theorem
- Spatial dynamics
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Mathematical Imaging Group
Ahrnbom, M. (Researcher), Batstone, K. J. (Researcher), Nilsson, D. (Researcher), Palmér, T. (Researcher), Pirinen, A. (Researcher), Simayijiang, Z. (Researcher), Solem, J. E. (Researcher), Sparr, G. (Researcher), Wadenbäck, M. (Researcher), Andersson, F. (Researcher), Ardö, H. (Researcher), Burgess, S. (Researcher), Bylow, E. (Researcher), Enqvist, O. (Researcher), Fredriksson, J. (Researcher), Heyden, A. (Researcher), Kahl, F. (Researcher), Källén, H. (Researcher), Landgren, M. (Researcher), Larsson, V. (Researcher), Nilsson, M. (Researcher), Olsson, C. (Researcher), Oskarsson, M. (Researcher), Overgaard, N. C. (Researcher), Sminchisescu, C. (Researcher) & Åström, K. (Researcher)
1989/01/01 → …
Project: Research
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