Observation of Spatiotemporal Self-Compression of Pulses in One-Dimensional Waveguide Arrays Fabricated by Laser Writing

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Resumo

The features of nonlinear propagation of high-intensity pulses in the short-wavelength infrared range in extended one-dimensional waveguide arrays with different spatial periods, formed in fused silica by laser writing, are studied. More than tenfold self-compression of femtosecond pulses up to a duration of several periods of the light field is experimentally observed.

Sobre autores

A. Arkhipova

Institute of Spectroscopy, Russian Academy of Sciences; National Research University Higher School of Economics

Email: isan@isan.troitsk.ru
108840, Troitsk, Moscow, Russia; 101000, Moscow, Russia

S. Zhuravitskiy

Institute of Spectroscopy, Russian Academy of Sciences; Quantum Technology Center, Faculty of Physics, Moscow State University

Email: isan@isan.troitsk.ru
108840, Troitsk, Moscow, Russia; 119991, Moscow, Russia

N. Skryabin

Institute of Spectroscopy, Russian Academy of Sciences; Quantum Technology Center, Faculty of Physics, Moscow State University

Email: isan@isan.troitsk.ru
108840, Troitsk, Moscow, Russia; 119991, Moscow, Russia

I. D'yakonov

Institute of Spectroscopy, Russian Academy of Sciences; Quantum Technology Center, Faculty of Physics, Moscow State University

Email: isan@isan.troitsk.ru
108840, Troitsk, Moscow, Russia; 119991, Moscow, Russia

A. Kalinkin

Institute of Spectroscopy, Russian Academy of Sciences; Quantum Technology Center, Faculty of Physics, Moscow State University

Email: isan@isan.troitsk.ru
108840, Troitsk, Moscow, Russia; 119991, Moscow, Russia

S. Kulik

Institute of Spectroscopy, Russian Academy of Sciences; Quantum Technology Center, Faculty of Physics, Moscow State University

Email: -isan@isan.troitsk.ru
108840, Troitsk, Moscow, Russia; 119991, Moscow, Russia

S. Chekalin

Institute of Spectroscopy, Russian Academy of Sciences

Email: isan@isan.troitsk.ru
108840, Troitsk, Moscow, Russia

Ya. Kartashov

Institute of Spectroscopy, Russian Academy of Sciences

Email: isan@isan.troitsk.ru
108840, Troitsk, Moscow, Russia

V. Zadkov

Institute of Spectroscopy, Russian Academy of Sciences

Autor responsável pela correspondência
Email: isan@isan.troitsk.ru
108840, Troitsk, Moscow, Russia

Bibliografia

  1. Y. Silberberg, Opt. Lett. 15, 1282 (1990).
  2. E. D. Zaloznaya, A. E. Dormidonov, V. O. Kompanets, S. V. Chekalin, and V. P. Kandidov, JETP Lett. 113, 787 (2021).
  3. A. B. Aceves, C. De Angelis, A. M.Rubenchik, and S. K. Turitsyn, Opt. Lett. 19, 329 (1994).
  4. A. B. Aceves, G. G. Luther, C. De Angelis, A. M.Rubenchik, and S. K. Turitsyn, Phys. Rev. Lett. 75, 73 (1995).
  5. D. Mihalache, D. Mazilu, F. Lederer, Y. V. Kartashov, L.-C. Crasovan, and L. Torner, Phys. Rev. E 70, 055603(R) (2004).
  6. A. A. Balakin, S. A. Skobelev, A. V. Andrianov, N. A. Kalinin, and A. G. Litvak, Opt. Lett. 44, 5085 (2019).
  7. M. Rehan, G. Kumar, V. Rastogi, D. A. Korobko, and A. A. Sysolyatin, Laser Phys. 29, 025104 (2019).
  8. B. A. Malomed, D. Mihalache, F. Wise, and L. Torner, J. Optics B 7, R53 (2005).
  9. B. A. Malomed, Eur. Phys. J. Special Topics 225, 2507 (2016).
  10. D. Mihalache, Rom. Rep. Phys. 69, 403 (2017).
  11. K. M. Davis, K. Miura, N. Sugimoto, and K. Hirao, Opt. Lett. 21, 1729 (1996).
  12. S. Minardi, F. Eilenberger, Y. V. Kartashov, A. Szameit, U. R�opke, J. Kobelke, K. Schuster, H. Bartelt, S. Nolte, L. Torner, F. Lederer, A. Tu�nnermann, and T. Pertsch, Phys. Rev. Lett. 105, 263901 (2013).
  13. W. H. Renninger and F. W. Wise, Nat.Commun. 4, 1719 (2013).
  14. F. Eilenberger, K. Prater, S. Minardi, R. Geiss, U. R�opke, J. Kobelke, K. Schuster, H. Bartelt, S. Nolte, A. Tunnermann, and T. Pertsch, Phys. Rev. X 3, 041031 (2013).
  15. D. N. Christodoulides and E. D. Eugenieva, Phys. Rev. Lett. 87, 233901 (2001).
  16. Y. V. Kartashov, G. E. Astrakharchik, B. A. Malomed, and L. Torner, Nat. Rev. Phys. 1, 185 (2019).
  17. M. A. C. Potenza, S. Minardi, J. Trull, G. Blasi, D. Salerno, P. D. Trapani, A. Varanavicius, and A. Piskarskas, Opt.Commun. 229, 381 (2004).
  18. S. Minardi, J. Trull, and M. A. C. Potenza, J. Holography Speckle 5, 85 (2009).
  19. D. Cheskis, S. Bar-Ad, R. Morandotti, J. S. Aitchison, H. S. Eisenberg, Y. Silberberg, and D. Ross, Phys. Rev. Lett. 91, 223901 (2003).
  20. A. A. Balakin, A. G. Litvak, V. A. Mironov, and S. A. Skobelev, Laser Phys. 28, 045401 (2018).
  21. F. Eilenberger, S. Minardi, A. Szameit, U. R�opke, J. Kobelke, K. Schuster, H. Bartelt, S. Nolte, L. Torner, F. Lederer, and A. Tu�nnermann, Phys. Rev. A 84, 013836 (2011).
  22. C. Milian, Y. V. Kartashov, and L. Torner, Phys. Rev. Lett. 123, 133902 (2019).

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