Towards a classification of bifurcations in Vlasov equations
Julien Barr\'e, David M\'etivier, Yoshiyuki Y. Yamaguchi

TL;DR
This paper classifies bifurcations in Vlasov equations based on resonance strength, introducing a new generic bifurcation involving Casimir coupling, supported by a reduced Hamiltonian model and numerical validation.
Contribution
It introduces a novel classification scheme for Vlasov bifurcations, including a new generic type involving Casimir coupling and a reduced Hamiltonian system for analysis.
Findings
Identification of a new bifurcation involving Casimir coupling
Development of a three-dimensional reduced Hamiltonian model
Excellent agreement between model predictions and numerical simulations
Abstract
We propose a classification of bifurcations of Vlasov equations, based on the strength of the resonance between the unstable mode and the continuous spectrum on the imaginary axis. We then identify and characterize a new type of generic bifurcation where this resonance is weak, but the unstable mode couples with the Casimirs, which are constants of motion, to form a size 3 Jordan block. We derive a three-dimensional reduced noncanonical Hamiltonian system describing this bifurcation: coupling with the Casimirs controls the phase space portrait. Comparison of the reduced dynamics with direct numerical simulations on a test case gives excellent agreement. We finally discuss the relevance of this bifurcation to specific physical situations.
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