Accepted author manuscript, 1.97 MB, PDF document
Available under license: CC BY: Creative Commons Attribution 4.0 International License
Research output: Contribution to Journal/Magazine › Journal article › peer-review
Research output: Contribution to Journal/Magazine › Journal article › peer-review
}
TY - JOUR
T1 - Crisis-induced Vibrational Resonance in a Phase-modulated Periodic Structure
AU - Adesina, P. O.
AU - Vincent, Uchechukwu
AU - Roy-Layinde, T.O.
AU - Kolebaje, O.T.
AU - McClintock, Peter V.E.
PY - 2024/9/13
Y1 - 2024/9/13
N2 - Double vibrational resonance is reported for a driven oscillator in a periodic structure of the Josephson junction type with high-frequency phase modulation. We identify two distinct phase modulation effects, namely, resonant induction and resonant amplification, leading to the appearance of a double resonance. We analyse these vibrational resonance phenomenon theoretically and numerically, and we show that the origin of the induced resonance is traceable to a transition from periodicity to quasiperiodicity associated with an attractor-merging crisis.
AB - Double vibrational resonance is reported for a driven oscillator in a periodic structure of the Josephson junction type with high-frequency phase modulation. We identify two distinct phase modulation effects, namely, resonant induction and resonant amplification, leading to the appearance of a double resonance. We analyse these vibrational resonance phenomenon theoretically and numerically, and we show that the origin of the induced resonance is traceable to a transition from periodicity to quasiperiodicity associated with an attractor-merging crisis.
KW - Attractor mergin
KW - Quasiperiodicity
KW - phase modulation
KW - Josephson junction
KW - bichromatic signal
M3 - Journal article
JO - Physical Review E
JF - Physical Review E
SN - 1539-3755
ER -