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ЖУРНАЛЫ // Компьютерная оптика

Компьютерная оптика, 2023, том 47, выпуск 5, страницы 702–709 (Mi co1170)

Шестиволновое взаимодействие с удвоенным обращением волнового фронта в многомодовых волноводах с керровской, тепловой нелинейностями
В. В. Ивахник, Д. Р. Капизов, В. И. Никонов

Список литературы

1. Charra F, Nunzi JM, “Nondegenerate multiwave mixing in polydiacetylene: phase conjugation with frequency”, J Opt Soc Am B, 8:3 (1991), 570–577  crossref
2. Ivakhnik VV, Nikonov VI, “Double phase conjugation with frequency conversion under nondegenerate six-wave mixing”, Optics Spectrosc, 75:2 (1993), 227–230
3. Karpuk SM, Rubanov AS, Tolstik AL, “Double phase conjugation in quadratic recording of dynamic holograms in resonance media”, Optics Spectrosc, 80:2 (1996), 276–280
4. Romanov OG, Gorbach DV, Tolstik AL, “Frequency transformation of optical vortices upon nondegenerate multiwave interaction in dye solutions”, Optics Spectrosc, 108:5 (2010), 768–773  crossref  mathscinet
5. Zhou H, Liao M, Huang SW, Zhou L, Qiu K, Wong CW, “Six-wave mixing induced by free-carrier plasma in silicon nanowire waveguides”, Laser Photon Rev, 10:6 (2016), 1054–1061  crossref
6. Nazemosadat E, Pourbeyram H, Mafi A, “Phase matching for spontaneous frequency conversion via four-wave mixing in graded–index multimode optical fibers”, J Opt Soc Am B, 33:2 (2016), 144–150  crossref
7. Turitsyn SK, Bednyakova AE, Fedoruk MP, Paperny SB, Clements WRL, “Inverse four-wave mixing and selfparametric amplification in optical fibre”, Nat Photon, 9:9 (2015), 608–614  crossref
8. Weng Y, He X, Wang J, Pan Z, “All-optical ultrafast wavelength and mode converter based on intermodal four-wave mixing in few-mode fibers”, Opt Commun, 348 (2015), 7–12  crossref
9. Anjum OF, Guasoni M, Horak P, Jung Y, Petropoulos P, Richardson DJ, Parmigiani F, “Polarization-insensitive fourwave-mixing-based wavelength conversion in few-mode optical fibers”, J Lightw Technol, 36:17 (2018), 3678–3683  crossref
10. Zhang H, Bigot-Astruc M, Bigot L, Sillard P, Fatome J, “Multiple modal and wavelength conversion process of a 10-Gbit/s signal in a 6-LP-mode fiber”, Opt Express, 27:11 (2019), 15413–15425  crossref
11. Zel'dovich BYa, Pilipetskiy NF, Shkunov VV, Wavefront reversal, “Nauka” Publisher, Moscow, 1985 (in Russian)
12. Ivakhnik VV, Nikonov VI, Savelyev MV, “Double wavefront reversal at six-wave interaction on the thermal nonlinearity”, Physics of Wave Processes and Radiotechnical Systems, 18:1 (2015), 13–17 (in Russian)
13. Ivakhnik VV, Nikonov VI, “Six-wave interaction with double wavefront reversal on thermal nonlinearity in a medium with a nonlinear absorption coefficient”, Computer Optics, 41:3 (2017), 315–321  crossref
14. Vinogradova MB, Rudenko OV, Sukhorukov AP, Wave theory, “Fizmatlit” Publisher, Moscow, 1979 (in Russian)  mathscinet
15. Voronin ES, Strizhevski\u{i} VL, “Parametric up-conversion of infrared radiation and its applications”, Soviet Physics Uspekhi, 22:1 (1979), 26–45  mathnet  crossref
16. Voronin ES, Petnikova VM, Shuvalov VV, “Use of degenerate parametric processes for wavefront correction (review)”, Sov J Quantum Electron, 11:5 (1981), 551–561  mathnet  crossref
17. Marcuse D, Light transmission optics, Van Nostrand Reinhold Co, New York, 1982  crossref
18. Ivakhnik VV, Kapizov DR, Nikonov VI, “Quality of wavefront reversal for four-wave interaction in a multimode waveguide with thermal nonlinearity”, Computer Optics, 46:1 (2022), 48–55  crossref


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