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Kvantovaya Elektronika, 2015, Volume 45, Number 1, Pages 75–77 (Mi qe16104)  

This article is cited in 14 scientific papers (total in 14 papers)

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Numerical simulation of current experimental 100 Gbit s-1 DWDM communication lines

O. V. Yushkoab*, O. E. Naniicd, A. A. Redyukab, V. N. Treshchikovd, M. P. Fedorukab

a Institute of Computing Technologies, Siberian Branch of the Russian Academy of Sciences, Novosibirsk
b Novosibirsk State University
c M. V. Lomonosov Moscow State University, Faculty of Physics
d "T8" LLC, Moscow

Abstract: We report the results of experimental and numerical studies of the maximum length of multi-span DP-QPSK DWDM communication lines (channel rate of 100 Gbit s-1) with 100-kmlong uniform and combined spans. The use of the combined spans (50 km of SSMF fibre and 50 km of NZDSF fibre) has allowed the maximum line length to be increased up to 6700 km, which is 60% higher than in the case of homogeneous SSMF- and NZDSF-based spans.

Keywords: coherent communication lines, polarisation division multiplexing, numerical modelling, nonlinear Schrödinger equation.
* Author to whom correspondence should be addressed

Full text: PDF file (477 kB)
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English version:
Quantum Electronics, 2015, 45:1, 75–77

Bibliographic databases:

PACS: 42.79.Sz, 42.81.Uv
Received: 16.07.2014
Revised: 09.09.2014

Citation: O. V. Yushko, O. E. Nanii, A. A. Redyuk, V. N. Treshchikov, M. P. Fedoruk, “Numerical simulation of current experimental 100 Gbit s-1 DWDM communication lines”, Kvantovaya Elektronika, 45:1 (2015), 75–77 [Quantum Electron., 45:1 (2015), 75–77]

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  • http://mi.mathnet.ru/eng/qe/v45/i1/p75

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    This publication is cited in the following articles:
    1. Popov D.A. Vasiliev A.B. Voronin V.G. Nanii O.E. Treshchikov V.N., Mosc. Univ. Phys. Bull., 70:5 (2015), 390–396  crossref  adsnasa  isi  elib  scopus
    2. Konyshev V.A., Leonov A.V., Nanii O.E., Treshchikov V.N., Ubaydullaev R.R., Opt. Commun., 355 (2015), 279–284  crossref  adsnasa  isi  elib  scopus
    3. Quantum Electron., 46:1 (2016), 76–80  mathnet  crossref  isi  elib
    4. Quantum Electron., 46:9 (2016), 795–800  mathnet  crossref  isi  elib
    5. Quantum Electron., 46:10 (2016), 924–929  mathnet  crossref  isi  elib
    6. Quantum Electron., 46:12 (2016), 1121–1128  mathnet  crossref  isi  elib
    7. Nanii O.E. Odintsov A.I. Smirnov A.P. Fedoseev A.I., Mosc. Univ. Phys. Bull., 71:4 (2016), 389–394  crossref  isi  elib  scopus
    8. Quantum Electron., 47:11 (2017), 1049–1052  mathnet  crossref  isi  elib
    9. Quantum Electron., 47:12 (2017), 1144–1146  mathnet  crossref  isi  elib
    10. O. E. Nanii, A. I. Kuzmenkov, S. N. Lukinykh, A. I. Fedoseev, A. P. Smirnov, V. N. Treshikov, 2017 Progress In Electromagnetics Research Symposium - Spring (PIERS), IEEE, 2017, 406–409  crossref  isi
    11. Quantum Electron., 48:12 (2018), 1157–1159  mathnet  crossref  isi  elib
    12. Quantum Electron., 49:12 (2019), 1149–1153  mathnet  crossref  isi  elib
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    14. Quantum Electron., 51:7 (2021), 635–638  mathnet  crossref  isi  elib
  • Квантовая электроника Quantum Electronics
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