Wei, P.

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  • Wei, P. (2)
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Author's Bibliography

Dynamics of the overdamped three-layer model with the incommensurate structure

Yang, Y.; Tekić, Jasmina; Hong, X. R.; Jia, L. P.; Wei, P.; Duan, W. S.

(2019)

TY  - JOUR
AU  - Yang, Y.
AU  - Tekić, Jasmina
AU  - Hong, X. R.
AU  - Jia, L. P.
AU  - Wei, P.
AU  - Duan, W. S.
PY  - 2019
UR  - https://www.tandfonline.com/doi/full/10.1080/17455030.2018.1428380
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/8216
AB  - An overdamped three-layer model with incommensurate structure consisting of two harmonic chains which both move over the substrate potential is studied in the presence of an external (Formula presented.) driving force. The force is applied only on the upper harmonic chain, and dynamics of the middle layer is examined. The results show that the dynamical mode-locking appears not only in the upper layer but also in the middle one. The behavior of the middle layer is strongly determined by the amplitude and frequency of the ac force, and the phase diagram which presents pinned, dynamical mode-locking and sliding regimes as a function of system parameters are given. Contrary to the standard case, critical depinning force and steps exhibit anomalous behavior. Particles trajectories have been analyzed which showed very different motion of particles from the one which usually appears in systems under (Formula presented.) forces.
T2  - Waves in Random and Complex Media
T1  - Dynamics of the overdamped three-layer model with the incommensurate structure
VL  - 29
IS  - 2
SP  - 236
EP  - 246
DO  - 10.1080/17455030.2018.1428380
ER  - 
@article{
author = "Yang, Y. and Tekić, Jasmina and Hong, X. R. and Jia, L. P. and Wei, P. and Duan, W. S.",
year = "2019",
abstract = "An overdamped three-layer model with incommensurate structure consisting of two harmonic chains which both move over the substrate potential is studied in the presence of an external (Formula presented.) driving force. The force is applied only on the upper harmonic chain, and dynamics of the middle layer is examined. The results show that the dynamical mode-locking appears not only in the upper layer but also in the middle one. The behavior of the middle layer is strongly determined by the amplitude and frequency of the ac force, and the phase diagram which presents pinned, dynamical mode-locking and sliding regimes as a function of system parameters are given. Contrary to the standard case, critical depinning force and steps exhibit anomalous behavior. Particles trajectories have been analyzed which showed very different motion of particles from the one which usually appears in systems under (Formula presented.) forces.",
journal = "Waves in Random and Complex Media",
title = "Dynamics of the overdamped three-layer model with the incommensurate structure",
volume = "29",
number = "2",
pages = "236-246",
doi = "10.1080/17455030.2018.1428380"
}
Yang, Y., Tekić, J., Hong, X. R., Jia, L. P., Wei, P.,& Duan, W. S.. (2019). Dynamics of the overdamped three-layer model with the incommensurate structure. in Waves in Random and Complex Media, 29(2), 236-246.
https://doi.org/10.1080/17455030.2018.1428380
Yang Y, Tekić J, Hong XR, Jia LP, Wei P, Duan WS. Dynamics of the overdamped three-layer model with the incommensurate structure. in Waves in Random and Complex Media. 2019;29(2):236-246.
doi:10.1080/17455030.2018.1428380 .
Yang, Y., Tekić, Jasmina, Hong, X. R., Jia, L. P., Wei, P., Duan, W. S., "Dynamics of the overdamped three-layer model with the incommensurate structure" in Waves in Random and Complex Media, 29, no. 2 (2019):236-246,
https://doi.org/10.1080/17455030.2018.1428380 . .
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The friction phenomena in underdamped three layers Frenkel-Kontorova model

Wei, P.; Tekić, Jasmina; Yang, Y.; Jiang, X.; Duan, W. S.; Yang, L.

(2016)

TY  - JOUR
AU  - Wei, P.
AU  - Tekić, Jasmina
AU  - Yang, Y.
AU  - Jiang, X.
AU  - Duan, W. S.
AU  - Yang, L.
PY  - 2016
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/1224
AB  - Hysteretic phenomenon is studied for an underdamped commensurate three layers model consisting of two harmonic chains that both move over the substrate. In the depinning process, two critical points F-1 and F-2 are found. In the pinning process, two critical points F-3 and F-4 are also found. The dependence of four critical forces on the system parameters is investigated. The analytical result of critical force F-1 is obtained which is in good agreement with the numerical one.
T2  - Waves in Random and Complex Media
T1  - The friction phenomena in underdamped three layers Frenkel-Kontorova model
VL  - 26
IS  - 4
SP  - 592
EP  - 598
DO  - 10.1080/17455030.2016.1179354
ER  - 
@article{
author = "Wei, P. and Tekić, Jasmina and Yang, Y. and Jiang, X. and Duan, W. S. and Yang, L.",
year = "2016",
abstract = "Hysteretic phenomenon is studied for an underdamped commensurate three layers model consisting of two harmonic chains that both move over the substrate. In the depinning process, two critical points F-1 and F-2 are found. In the pinning process, two critical points F-3 and F-4 are also found. The dependence of four critical forces on the system parameters is investigated. The analytical result of critical force F-1 is obtained which is in good agreement with the numerical one.",
journal = "Waves in Random and Complex Media",
title = "The friction phenomena in underdamped three layers Frenkel-Kontorova model",
volume = "26",
number = "4",
pages = "592-598",
doi = "10.1080/17455030.2016.1179354"
}
Wei, P., Tekić, J., Yang, Y., Jiang, X., Duan, W. S.,& Yang, L.. (2016). The friction phenomena in underdamped three layers Frenkel-Kontorova model. in Waves in Random and Complex Media, 26(4), 592-598.
https://doi.org/10.1080/17455030.2016.1179354
Wei P, Tekić J, Yang Y, Jiang X, Duan WS, Yang L. The friction phenomena in underdamped three layers Frenkel-Kontorova model. in Waves in Random and Complex Media. 2016;26(4):592-598.
doi:10.1080/17455030.2016.1179354 .
Wei, P., Tekić, Jasmina, Yang, Y., Jiang, X., Duan, W. S., Yang, L., "The friction phenomena in underdamped three layers Frenkel-Kontorova model" in Waves in Random and Complex Media, 26, no. 4 (2016):592-598,
https://doi.org/10.1080/17455030.2016.1179354 . .
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