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Spectral distribution of a double-well Duffing oscillator subject to a random force.

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Spectral distribution of a double-well Duffing oscillator subject to a random force. / Mannella, R.; McClintock, Peter V. E.; Moss, F.
In: EPL, Vol. 4, No. 5, 1987, p. 511-515.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

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Mannella R, McClintock PVE, Moss F. Spectral distribution of a double-well Duffing oscillator subject to a random force. EPL. 1987;4(5):511-515. doi: 10.1209/0295-5075/4/5/001

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Bibtex

@article{6d1101bd22c14a36b53cf6bc52559de7,
title = "Spectral distribution of a double-well Duffing oscillator subject to a random force.",
abstract = "The power spectral density Q(w) for an electronic circuit model of the double-well Duffing oscillator, driven by Gaussian white noise, has been measured in the limit of very low damping. Three distinct maxima and a plateau region are found in Q(w), in excellent qualitative agreement with a recent theoretical prediction by Dykman and co-workers.",
author = "R. Mannella and McClintock, {Peter V. E.} and F. Moss",
year = "1987",
doi = "10.1209/0295-5075/4/5/001",
language = "English",
volume = "4",
pages = "511--515",
journal = "EPL",
issn = "0295-5075",
publisher = "IOP Publishing Ltd.",
number = "5",

}

RIS

TY - JOUR

T1 - Spectral distribution of a double-well Duffing oscillator subject to a random force.

AU - Mannella, R.

AU - McClintock, Peter V. E.

AU - Moss, F.

PY - 1987

Y1 - 1987

N2 - The power spectral density Q(w) for an electronic circuit model of the double-well Duffing oscillator, driven by Gaussian white noise, has been measured in the limit of very low damping. Three distinct maxima and a plateau region are found in Q(w), in excellent qualitative agreement with a recent theoretical prediction by Dykman and co-workers.

AB - The power spectral density Q(w) for an electronic circuit model of the double-well Duffing oscillator, driven by Gaussian white noise, has been measured in the limit of very low damping. Three distinct maxima and a plateau region are found in Q(w), in excellent qualitative agreement with a recent theoretical prediction by Dykman and co-workers.

U2 - 10.1209/0295-5075/4/5/001

DO - 10.1209/0295-5075/4/5/001

M3 - Journal article

VL - 4

SP - 511

EP - 515

JO - EPL

JF - EPL

SN - 0295-5075

IS - 5

ER -