Experimental demonstration of 10-gb/s data format conversions between NRZ and RZ using SOA-loop-mirror
暂无分享,去创建一个
[1] Jianjun Yu,et al. Generation of modified duobinary RZ signals by using one single dual-arm LiNbO 3 modulator , 2003 .
[2] W. Pieper,et al. SLALOM: semiconductor laser amplifier in a loop mirror , 1995 .
[3] Paul R. Prucnal,et al. Performance-improved all-optical RZ to NRZ format conversion using duplicator and wavelength converter , 2002 .
[4] Robert J. Manning,et al. Recovery of a π phase shift in 12.5 ps in a semiconductor laser amplifier , 1995 .
[5] Chi-Wai Chow,et al. All-optical NRZ to RZ format and wavelength converter by dual-wavelength injection locking , 2002 .
[6] E. Desurvire,et al. All-optical RZ-to-NRZ format conversion at 10 Gbit/s with nonlinear optical loop mirror , 1994 .
[7] R. Manning,et al. Three-wavelength device for all-optical signal processing. , 1994, Optics letters.
[8] A. Ellis,et al. Semiconductor laser amplifiers for ultrafast all-optical signal processing , 1997 .
[9] Pak Shing Cho,et al. 10 Gb/s RZ to NRZ format conversion using a semiconductor-optical-amplifier/fiber-Bragg-grating wavelength converter , 1998, 24th European Conference on Optical Communication. ECOC '98 (IEEE Cat. No.98TH8398).
[10] Alan E. Willner,et al. All-optical data format conversions and reconversions between the wavelength and time domains for dynamically reconfigurable WDM networks , 1996 .
[11] S.J.B. Yoo,et al. Novel all-optical 10 Gbp/s RZ-to-NRZ conversion using SOA-loop-mirror , 2001, OFC 2001. Optical Fiber Communication Conference and Exhibit. Technical Digest Postconference Edition (IEEE Cat. 01CH37171).
[12] J. P. Sokoloff,et al. A terahertz optical asymmetric demultiplexer (TOAD) , 1993, IEEE Photonics Technology Letters.
[13] A. Kloch,et al. 40 Gbit/s all-optical wavelength converter and RZ-to-NRZ format adapter realised by monolithic integrated active Michelson interferometer , 1997 .
[14] M. Eiselt,et al. Chirp consequences of all-optical RZ to NRZ conversion using cross-phase modulation in an active semiconductor photonic integrated circuit , 2000, IEEE Photonics Technology Letters.
[15] J. Conradi,et al. Reduction of pulse-to-pulse interaction using alternative RZ formats in 40-Gb/s systems , 2002, IEEE Photonics Technology Letters.
[16] V. Baby,et al. All-optical data format conversion between RZ and NRZ based on a Mach-Zehnder interferometric wavelength converter , 2003, IEEE Photonics Technology Letters.
[17] A.E. Willner,et al. All-optical TDM-to-WDM data format conversion in a dynamically reconfigurable WDM network , 1995, IEEE Photonics Technology Letters.
[18] Chu Hwan Yim,et al. All-Optical NRZ-to-Inverted-RZ Converter with Extinction Ratio Enhancement Using a Modified Terahertz Optical Asymmetric Demultiplexer (Joint Special Issue on Photonics in Switching : Systems and Devices) , 1999 .
[19] D. Norte,et al. Experimental demonstrations of all-optical conversions between the RZ and NRZ data formats incorporating noninverting wavelength shifting leading to format transparency , 1996, IEEE Photonics Technology Letters.
[20] Min Yong Jeon,et al. All-optical format conversion from NRZ to RZ signals using a walk-off balanced nonlinear fibre loop mirror , 1996 .
[21] Alan E. Willner,et al. Demonstration of an all-optical data format transparent WDM-to-TDM network node with extinction ratio enhancement for reconfigurable WDM networks , 1996 .
[22] High performance non-interferometric semiconductor-optical-amplifier/fibre-Bragg-grating wavelength converter , 1998 .
[23] H. Weber,et al. Optimization of SOA-based Sagnac-interferometer switches for demultiplexing to 10 and 40 Gb/s , 2001 .
[24] Paul R. Prucnal,et al. Experimental study on the regeneration capability of the terahertz optical asymmetric demultiplexer , 2001 .