RAS PhysicsРадиотехника и электроника Journal of Communications Technology and Electronics

  • ISSN (Print) 0033-8494
  • ISSN (Online) 3034-5901

New Possibilities for Using Specialty Optical Fibers

PII
10.31857/S0033849425040084-1
DOI
10.31857/S0033849425040084
Publication type
Article
Status
Published
Authors
Volume/ Edition
Volume 70 / Issue number 4
Pages
384-395
Abstract
The results of the development and creation of various specialty optical fibers (SOF) for application in science and engineering are presented. Methods of producing SOF with Bragg structures written directly into the light-guiding core during fiber drawing are described. Based on these SOF, reflectometric sensors and single-frequency laser complexes have been developed. By means of precision thinning of the reflecting coating and deposition of nanoparticles, fiber optic liquid refractometers have been produced. The ways of using multicore SOF and the possibilities of creating final probes based on them are demonstrated.
Keywords
специальные оптические волокна брэгговские решётки волоконные рефрактометры микроструктурированные световоды
Date of publication
16.09.2025
Year of publication
2025
Number of purchasers
0
Views
17

References

  1. 1. Specialty Optical Fibers Handbook / Eds. by A. Mendez, T. F. Morse. Oxford: Academic Press, 2007.
  2. 2. Paul M.C., Ferreira M.F.S. Specialty Optical Fibers. Materials, Fabrication Technology and Applications / Eds. by M. C. Paul, M.F. S. Ferreira. Sawston: Woodhead Publishing, 2024. P. 3.
  3. 3. He J., Xu B., Xu X. et al. // Photonic Sensors. 2021. V. 11. P. 203.
  4. 4. Dostovalov A.V., Wolf A.A., Parygin A.V. et al. // Opt. Express. 2016. V. 24. № 15. P. 16232.
  5. 5. Chamorovskiy Yu.K., Starostin N.I., Ryabko M.V. et al. // Opt.Commun. 2009. V. 282. № 23. P. 4618.
  6. 6. Уланов А.Е., Устимчик В.Е., Чаморовский Ю.К., Никитов С.А. // РЭ. 2014. Т. 59. № 5. С. 445.
  7. 7. Ustimchik V.E., Rissanen J., Popov S.M. et al. // Opt. Express. 2017. V. 25. № 9. P. 10693.
  8. 8. Li C., Tang J., Cheng C. et al. // Photonic Sensors. 2021. V. 11. P. 91.
  9. 9. Wang Y., Gong J., Dong B. et al. // J. Lightwave Technol. 2012. V. 30. № 17. P. 2751.
  10. 10. Przhiialkovskii D.V., Butov O.V. // Results in Phys. 2021. V. 30. Article No. 104902.
  11. 11. Popov S.M., Ryakhovskii D.V., Kolosovskii A.O. et al. // Bull. Lebedev Phys. Inst. 2023. V. 50. № Suppl 13. P. S1464.
  12. 12. Shatalin S.V., Treschikov V.N., Rogers A.J. // Appl. Opt. 1998. V. 37. № 24. P. 5600.
  13. 13. Попов С.М., Бутов О.В., Колосовский А.О. и др. // Квантов. электрон. 2019. Т. 49. № 12. С. 1127.
  14. 14. Харасов Д.Р., Бенгальский Д.М., Вяткин М.Ю. и др. // Квантов. Электрон. 2020. Т. 50. № 5. С. 510.
  15. 15. Turitsyn S.K., Babin S.A., El-Taher A.E. et al. // Nature Photonics. 2010. V. 4. № 4. P. 231.
  16. 16. Fotiadi A.A. // Nature Photonics. 2010. V. 4. № 4. P. 204.
  17. 17. Popov S.M., Butova O.V., Chamorovski Y.K. et al. // Results in Phys. 2018. V. 9. P. 806.
  18. 18. Popov S.M., Butov O.V., Bazakutsa A.P. et al. // Results in Phys. 2020. V. 16. Article No. 102868.
  19. 19. Rybaltovsky A., Popov S., Ryakhovskiy D. et al. // Photonics. 2022. V. 9. № 11. P. 840.
  20. 20. Кузнецов П.И., Судас Д.П., Савельев Е.А. // ПТЭ. 2020. № 4. С. 83.
  21. 21. Kuznetsov P.I., Sudas D.P., Savelyev E.A. // Sensors and Actuators A: Physical. 2021. V. 321. Article No. 112576.
  22. 22. Savelyev E.A., Sudas D.P., Kuztestov P.I. // Opt. Lett. 2022. V. 47. № 2. P. 361.
  23. 23. Sudas D.P., Zakharov L.Yu., Jitov V.A. et al. // Sensors. 2022. V. 22. № 10. P. 3665.
  24. 24. Chamorovskiy Yu.K., Butov O.V., Kolosovskiy A.O. et al. // Opt. Fiber Technol. 2017. V. 34. P. 30.
  25. 25. Бутов О.В., Базакуца А.П., Федоров А.Н. и др. // Фотон-экспресс. 2021. № 6 (174). С. 262.
  26. 26. Xue P., Qiang Liu Q., Lu Sh. et al. // Opt. Fiber Technol. 2023. V. 77. Article No. 103277.
  27. 27. Рябко М.В., Никитов С.А., Чаморовский Ю.К. // Нано- и микросистемная техника. 2005. № 5. С. 33.
QR
Translate

Индексирование

Scopus

Scopus

Scopus

Crossref

Scopus

Higher Attestation Commission

At the Ministry of Education and Science of the Russian Federation

Scopus

Scientific Electronic Library