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RĪGAS TEHNISKĀ UNIVERSITĀTE Vjačeslavs ... - Aleph Files

RĪGAS TEHNISKĀ UNIVERSITĀTE Vjačeslavs ... - Aleph Files

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36. Idler W., Bigo S., Frignac Y., Franz B., Veith G. Vestigial side band demultiplexing for ultra<br />

high capacity (0.64 bit/s/Hz) transmission of 128x40 Gb/s channels// Optical Fiber<br />

Communication Conference (OFC), 2001. - 1(MM3).<br />

37. Idler W., Charlet G., Dischler R., Frignac Y., Bigo S. 0.8 bit/s/Hz of information spectral<br />

density by vestigial sideband filtering of 42.66 Gb/s NRZ// European Conference on Optical<br />

Communication (ECOC), 2002. - 3(8.1.5).<br />

38. Ito T., Fukuchi K., Sekiya K., Ogasahara D., Ohhira R., and Ono T. 6.4 Tb/s (160x40 Gb/s)<br />

WDM transmission experiment with 0.8 bit/s/Hz spectral efficiency// European Conference<br />

on Optical Communication (ECOC), 2000. - Post deadline papers (PD1.1).<br />

39. ITU-T G.652 Characteristics of a single-mode optical fibre and cable, 2005. - 22 p.<br />

40. ITU-T G.694.1 Spectral grids for WDM applications: DWDM frequency grid, 2002. - 14 p.<br />

41. ITU-T G.694.2 Spectral grids for WDM applications: CWDM wavelength grid, 2003. - 12 p.<br />

42. Kaminow I., Li T., Willner A. Optical Fiber Telecommunications V A. – USA: Elsevier,<br />

2008. - 945 p.<br />

43. Kaminow I., Li T., Willner A. Optical Fiber Telecommunications V B. – USA: Elsevier,<br />

2008. - 929 p.<br />

44. Karasek M. optimization of NRZ data transmission at 10 Gbit/s over G.652 without in-line<br />

EDFAs// Academy of Sciences of the Czech Republic, CESNET, 2001. - pp. 1-9.<br />

45. Kinoshita S., Okiyama T., Moriya K. Wideband WDM Erbium-doped Optical Fiber<br />

Amplifiers for 10 Gb/s, 32-channel SMF transmission systems// Fujitsu Science &<br />

Technologies, 1999. - pp. 82-90.<br />

46. Lee H., Lee D., Han J., Chung S., Kim K. A Variable-Gain Optical Amplifier for Metro<br />

WDM Networks With Mixed Span Losses: A Gain-Clamped Semiconductor Optical<br />

Amplifier Combined With a Raman Fiber Amplifier// IEEE Photonics technology letters,<br />

2005. - Vol.17. - pp. 1301-1303.<br />

47. Lee K., Han Y., Lee S. A Self-restortable Colorless Bidirectional WDM-PON based on ASEinjected<br />

FP-LDs// Fiber optics communications, 2006. - pp. 1-3.<br />

48. Li J.,Zhang H., Guo Y. A Novel Fast Multicast Algorithm with Enhanced Survivability in<br />

WDM Optical Networks// Photonic Network Communications, 2004. - Vol.8. - pp. 223-232.<br />

49. Lin Q., Agrawal P. Raman response function for silica fibers// Optics Letters, 2006. - Vol.31.<br />

- pp. 3086-3088.<br />

50. Lin Q., Yaman F., Agrawal G. Photon-Pair generation in optical fibers throught four-wave<br />

mixing: Role of Raman scattering and pump polarization// Physical Review, 2007. -<br />

Vol.A75. - pp. 1 -20.<br />

51. Livas J., Zhou J. Amplifiers and network elements in the metro environment// Journal of<br />

Lightwave technology, 2004. - Vol.22, - No.1. - pp. 290-293.<br />

52. Marcuse D. Theory of dielectric optical waveguides. – USA: Academic Press Inc., 1991. -<br />

408 p.<br />

53. Matera F., Mecozzi A., Romagnoli M., Settembre M. Sideband instability induced by<br />

periodic power variation in long-distance fiber links// Optics Letters, 1993. - Vol.18. - pp.<br />

1499-1501.<br />

54. Mazroa D., Zsigmond S., Cinkler T. Determining the maximum signal power in 10 Gbit/s<br />

WDM optical networks// Photonic Network Communications, 2008. - Vol.12. - pp. 1-13.<br />

55. Mena P., Steel J. Efficient Series-Expansion-Based Physical Model of Er-Doped Fiber<br />

Amplifiers// IEEE LEOS Annual Conference, 2003. - Vol.1. - pp. 248-249.<br />

56. Miyamoto Y., Yonenaga K, Kuwahara S., Tomizawa M., Hirano A., Toba H., Murata K.,<br />

Tada Y., Umeda Y., Miyazawa H. 1.2-Tbit/s(30x42.7-Gbit/s ETDM optical channel) WDM<br />

transmission over 376 km with 125-km spacing using forward error correction and carriersuppressed<br />

RZ format// Optical Fiber Communication Conference (OFC), 2000. - Vol.4. -pp.<br />

245–247.

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