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Comment on "Nonlinear resonance and chaos in the relativistic phase space for driven nonlinear systems".

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Comment on "Nonlinear resonance and chaos in the relativistic phase space for driven nonlinear systems". / Luchinsky, D. G.; McClintock, Peter V.E.; Soskin, Stanislav M. et al.
In: Physical Review E, Vol. 53, No. 4, 1996, p. 4240-4241.

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@article{ca0bf2a92cb149d0bcd59a9869877930,
title = "Comment on {"}Nonlinear resonance and chaos in the relativistic phase space for driven nonlinear systems{"}.",
abstract = "Kim and Lee (Phys. Rev. E 52, 473; 1995) report relativity-induced resonances in periodically driven oscillators. We comment that zero-dispersion nonlinear resonance (ZDNR) will occur in some of the systems considered, outline the physical origins of the ZDNR, and propose an explanation of a discrepancy noted by Kim and Lee between their theoretical and numerical values of the energy at the stationary stable points of Poincare sections.",
author = "Luchinsky, {D. G.} and McClintock, {Peter V.E.} and Soskin, {Stanislav M.} and Stein, {N. D.} and Neiman, {N. D.}",
year = "1996",
doi = "10.1103/PhysRevE.53.4240",
language = "English",
volume = "53",
pages = "4240--4241",
journal = "Physical Review E",
issn = "1539-3755",
publisher = "American Physical Society",
number = "4",

}

RIS

TY - JOUR

T1 - Comment on "Nonlinear resonance and chaos in the relativistic phase space for driven nonlinear systems".

AU - Luchinsky, D. G.

AU - McClintock, Peter V.E.

AU - Soskin, Stanislav M.

AU - Stein, N. D.

AU - Neiman, N. D.

PY - 1996

Y1 - 1996

N2 - Kim and Lee (Phys. Rev. E 52, 473; 1995) report relativity-induced resonances in periodically driven oscillators. We comment that zero-dispersion nonlinear resonance (ZDNR) will occur in some of the systems considered, outline the physical origins of the ZDNR, and propose an explanation of a discrepancy noted by Kim and Lee between their theoretical and numerical values of the energy at the stationary stable points of Poincare sections.

AB - Kim and Lee (Phys. Rev. E 52, 473; 1995) report relativity-induced resonances in periodically driven oscillators. We comment that zero-dispersion nonlinear resonance (ZDNR) will occur in some of the systems considered, outline the physical origins of the ZDNR, and propose an explanation of a discrepancy noted by Kim and Lee between their theoretical and numerical values of the energy at the stationary stable points of Poincare sections.

U2 - 10.1103/PhysRevE.53.4240

DO - 10.1103/PhysRevE.53.4240

M3 - Journal article

VL - 53

SP - 4240

EP - 4241

JO - Physical Review E

JF - Physical Review E

SN - 1539-3755

IS - 4

ER -