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Classical and quantum chaos in the generalized parabolic lemon-shaped billiard (CROSBI ID 83180)

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Lopac, Vjera ; Mrkonjić, Ivana ; Radić, Danko Classical and quantum chaos in the generalized parabolic lemon-shaped billiard // Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics, 59 (1999), 1; 303-311. doi: 10.1103/PhysRevE.59.303

Podaci o odgovornosti

Lopac, Vjera ; Mrkonjić, Ivana ; Radić, Danko

engleski

Classical and quantum chaos in the generalized parabolic lemon-shaped billiard

Two-dimensional billiards of a generalized parabolic Iemonlike shape are investigated classically and quantum mechanically depending on the shape parameter delta. Quantal spectra are analyzed by means of the nearest-neighbor spacing distribution method. Calculated results are well accounted for by the proposed new two-parameter distribution function P(s), which is a generalization of Brody and Berry-Robnik distributions. Classically, Poincare diagrams are shown and interpreted in terms of the lowest periodic orbits. For delta=2, the billiard has some unique characteristics resulting from the focusing property of the parabolic mirror. Comparison of the classical and quantal results shows an accordance with the Bohigas, Giannoni, and Schmit conjecture and confirms the relevance of the new distribution for the analysis of realistic spectral data.

energy-level statistics ; spectral statistics ; quantum billiard ; numerical experiment ; chaotical systems

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Podaci o izdanju

59 (1)

1999.

303-311

objavljeno

1063-651X

1095-3787

10.1103/PhysRevE.59.303

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Fizika

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