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Prog. Theor. Phys. Vol. 80 No. 6 (1988) pp. 953-972
Scaling Structures of Chaotic Attractors and q-Phase Transitions at Crises in the Hénon and the Annulus Maps
Koji Tomita,
Hiroki Hata,
Takehiko Horita,
Hazime Mori and
Terumitsu Morita
Department of Physics, Kyushu University 33, Fukuoka 812
(Received May 9, 1988)
Abstract:
Singular local structures of the chaotic attractors at the bifurcation
points for three types of crises in the Hénon and the annulus maps are
studied theoretically and numerically in terms of the spectrum h(Λ)
of the coarse-grained local expansion rates Λ of nearby orbits along
the local unstable manifold, and are shown to produce linear parts in
h(Λ) with slopes qα=2, qβ < 1/2 and
qγ=1. These linear slopes bring about three types of discontinuous
phase transitons of the q-weighted average
Λ(q), (-∞<q<∞) of Λ at
q=qα,qβ,qγ, respectively, as q is varied. The
q-phase transition at q=qα is due to the homoclinic tangencies,
whereas that at q=qβ is caused by a collision of the chaotic
attractor with an unstable periodic orbit, where the slope qβ and
the singularity exponent α of the natural invariant measure at the
periodic orbit are given in terms of the eigenvalues of certain periodic
orbits. Just after the merging of two chaotic attractors into one chaotic
attractor, a q-phase transition occurs at q=qγ due to the
intermittent hopping motions between two phase-space regions formerly
occupied by the old attractors.
URL :
http://ptp.ipap.jp/link?PTP/80/953/
DOI : 10.1143/PTP.80.953
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