Resonant interaction (English Wikipedia)

Analysis of information sources in references of the Wikipedia article "Resonant interaction" in English language version.

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  • McComas, C. Henry; Bretherton, Francis P. (1977). "Resonant interaction of oceanic internal waves". Journal of Geophysical Research. 82 (9): 1397–1412. Bibcode:1977JGR....82.1397M. doi:10.1029/JC082i009p01397.
  • Janssen, P. A. E. M. (2009). "On some consequences of the canonical transformation in the hamiltonian theory of water waves". J. Fluid Mech. 637: 1–44. Bibcode:2009JFM...637....1J. doi:10.1017/S0022112009008131.
  • Onorato, Miguel; Vozella, Lara; Proment, Davide; Lvov, Yuri V. (2015). "A route to thermalization in the α-Fermi–Pasta–Ulam system". Proc. Natl. Acad. Sci. U.S.A. 112 (14): 4208–4213. arXiv:1402.1603. Bibcode:2015PNAS..112.4208O. doi:10.1073/pnas.1404397112. PMC 4394280. PMID 25805822.
  • Zakharov, V. (1968). "Stability of periodic waves of finite amplitude on a surface of a deep fluid". J. Appl. Mech. Tech. Phys. 9 (2): 190–194. Bibcode:1968JAMTP...9..190Z. doi:10.1007/BF00913182. S2CID 55755251.
  • Bonnefoy, F.; Haudin, F.; Michel, G.; Semin, B.; Humbert, T.; Aumaître, S.; Berhanu, M.; Falcon, E. (2018). "Observation of resonant interactions among surface gravity waves". J. Fluid Mech. 805: R3. arXiv:1606.09009. doi:10.1017/jfm.2016.576. S2CID 1694066.
  • Longuet-Higgins, Michael Selwyn; Gill, Adrian Edmund (1967). "Resonant interactions between planetary waves". Proceedings of the Royal Society A. 299 (1456): 120–144. Bibcode:1967RSPSA.299..120L. doi:10.1098/rspa.1967.0126. S2CID 120179723.
  • Kishimoto, Nobu; Yoneda, Tsuyoshi (2017). "A number theoretical observation of a resonant interaction of Rossby waves". Kodai Mathematical Journal. 40 (1): 16–20. arXiv:1409.1031. doi:10.2996/kmj/1490083220. S2CID 118262278.
  • Zhou, Ji‐xun; Zhang, Xue‐zhen (1991). "Resonant interaction of sound wave with internal solitons in the coastal zone". The Journal of the Acoustical Society of America. 90 (4): 2042–2054. Bibcode:1991ASAJ...90.2042Z. doi:10.1121/1.401632.
  • Kato, Shoji (2004). "Wave–Warp Resonant Interactions in Relativistic Disks and kHz QPOs". Publications of the Astronomical Society of Japan. 56 (3): 599–607. Bibcode:2004PASJ...56..559K. doi:10.1093/pasj/56.3.599.
  • Bogatskaya, A. V.; Klenov, N. V.; Tereshonok, M. V.; Adjemov, S. S.; Popov, A. M. (2018). "Resonant interaction of electromagnetic wave with plasma layer and overcoming the radiocommunication blackout problem". Journal of Physics D: Applied Physics. 51 (18): 185602. Bibcode:2018JPhD...51r5602B. doi:10.1088/1361-6463/aab756.
  • Gover, Avraham; Yariv, Amnon (2020). "Free-Electron–Bound-Electron Resonant Interaction". Physical Review Letters. 124 (6): 064801. Bibcode:2020PhRvL.124f4801G. doi:10.1103/PhysRevLett.124.064801. PMID 32109105.
  • Vasiliev, A. A.; Artemyev, A. V.; Neishtadt, A. I.; Vainchtein, D. L.; Zelenyi, L. M. (2012). "Resonant Interaction of Charged Particles with Electromagnetic Waves". Chaos, Complexity and Transport. pp. 16–23. doi:10.1142/9789814405645_0002.
  • Asenjo, Felipe A.; Mahajan, Swadesh M. (2020). "Resonant interaction between dispersive gravitational waves and scalar massive particles". Phys. Rev. D. 101 (6): 063010. Bibcode:2020PhRvD.101f3010A. doi:10.1103/PhysRevD.101.063010.
  • Veljkovic, Veljko (1985). "Is it possible to analyze DNA and protein sequences by the methods of digital signal processing?". IEEE Trans. Biomed. Eng. 32 (5): 337–41. doi:10.1109/TBME.1985.325549. PMID 2581884. S2CID 23892544.
  • Calabrò, Emanuele; Magazù, Salvatore (2018). "Resonant interaction between electromagnetic fields and proteins: A possible starting point for the treatment of cancer". Electromagnetic Biology and Medicine. 37 (2): 1–14. doi:10.1080/15368378.2018.1499031. PMID 30019948. S2CID 51678917.

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  • McComas, C. Henry; Bretherton, Francis P. (1977). "Resonant interaction of oceanic internal waves". Journal of Geophysical Research. 82 (9): 1397–1412. Bibcode:1977JGR....82.1397M. doi:10.1029/JC082i009p01397.
  • Janssen, P. A. E. M. (2009). "On some consequences of the canonical transformation in the hamiltonian theory of water waves". J. Fluid Mech. 637: 1–44. Bibcode:2009JFM...637....1J. doi:10.1017/S0022112009008131.
  • Onorato, Miguel; Vozella, Lara; Proment, Davide; Lvov, Yuri V. (2015). "A route to thermalization in the α-Fermi–Pasta–Ulam system". Proc. Natl. Acad. Sci. U.S.A. 112 (14): 4208–4213. arXiv:1402.1603. Bibcode:2015PNAS..112.4208O. doi:10.1073/pnas.1404397112. PMC 4394280. PMID 25805822.
  • Zakharov, V. (1968). "Stability of periodic waves of finite amplitude on a surface of a deep fluid". J. Appl. Mech. Tech. Phys. 9 (2): 190–194. Bibcode:1968JAMTP...9..190Z. doi:10.1007/BF00913182. S2CID 55755251.
  • Longuet-Higgins, Michael Selwyn; Gill, Adrian Edmund (1967). "Resonant interactions between planetary waves". Proceedings of the Royal Society A. 299 (1456): 120–144. Bibcode:1967RSPSA.299..120L. doi:10.1098/rspa.1967.0126. S2CID 120179723.
  • Zhou, Ji‐xun; Zhang, Xue‐zhen (1991). "Resonant interaction of sound wave with internal solitons in the coastal zone". The Journal of the Acoustical Society of America. 90 (4): 2042–2054. Bibcode:1991ASAJ...90.2042Z. doi:10.1121/1.401632.
  • Kato, Shoji (2004). "Wave–Warp Resonant Interactions in Relativistic Disks and kHz QPOs". Publications of the Astronomical Society of Japan. 56 (3): 599–607. Bibcode:2004PASJ...56..559K. doi:10.1093/pasj/56.3.599.
  • Bogatskaya, A. V.; Klenov, N. V.; Tereshonok, M. V.; Adjemov, S. S.; Popov, A. M. (2018). "Resonant interaction of electromagnetic wave with plasma layer and overcoming the radiocommunication blackout problem". Journal of Physics D: Applied Physics. 51 (18): 185602. Bibcode:2018JPhD...51r5602B. doi:10.1088/1361-6463/aab756.
  • Gover, Avraham; Yariv, Amnon (2020). "Free-Electron–Bound-Electron Resonant Interaction". Physical Review Letters. 124 (6): 064801. Bibcode:2020PhRvL.124f4801G. doi:10.1103/PhysRevLett.124.064801. PMID 32109105.
  • Asenjo, Felipe A.; Mahajan, Swadesh M. (2020). "Resonant interaction between dispersive gravitational waves and scalar massive particles". Phys. Rev. D. 101 (6): 063010. Bibcode:2020PhRvD.101f3010A. doi:10.1103/PhysRevD.101.063010.

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