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84篇 您的检索式:作者名="Andrekson"
    题名 作者 年代 出处 被引量
1O-TDM demultiplexer with 40dB gain based on a fiber optical parametric amplifier 显示文摘HANSRYD J ANDREKSON P A 2001IEEE Photon Technol Lett2001,13,7:2
2Soliton stability in optical fibers with polarization-mode dispersion显示文摘 Karlsson M Andrekson P 1998IEEE Photon Technol Lett1998,10,3:1
3Fiber based optical parametric amplifiers and their applications 显示文摘HANSRYD J ANDREKSON P A WESTLUND M 2002Journal of Selected Topics in Quantum Electronics2002,8,3:1
4Robustness of dispersion-managed solitons to the polarization-mode dispersion in optical fibers显示文摘 Karlsson M Andrekson P 2001IEEE Photon Technol Lett2001,13,2:1
5High-Perfor- mance Optical-Fiber-Nonlinearity-Based Optical Waveform Monitoring 显示文摘WESTLUND M ANDREKSON A SUNNERUD H 2005IEEE Journal of Lightwave Technology2005,23,6:1
6Analytical theory for PMD compensation显示文摘Sunnerud H Karlaaon M Andrekson P A 2000IEEE Photon Technol Lett2000,12,1:1
7High-performance optical-fiber-nonlinearity-based optical waveform monitoring显示文摘WESTLUND M ANDREKSON P A SUNNERUD H 2005J Lightwave Technol2005,23,6:1
8Electrical noise measurement on laser diodes for monitoring of optical feedback and mode hopping 显示文摘ANDREKSON P A ANDERSSON P ALPING A 1986Electron Lett1986,22,:1
9Picosecond optical sampling using four-wave mixing in fibre显示文摘ANDREKSON P A 1991Electronics Letters1991,27,16:1
10Exploiting the Faster-Than-Nyquist Concept in Wavelength-Division Multiplexing Systems Using Duobinary Shaping显示文摘This paper begins with Nyquist wavelength-division multiplexing (WDM) and then introduces faster-than-Nyquist. In faster-than-Nyquist, a certain amount of inter-symbol interference (ISI) is accepted, which violates the fundamental principle of Nyquist WDM. This results in much-relaxed transceiver bandwidth and simpler spectral design. However, in faster-than-Nyquist, implementation complexity is shifted from the transmitter side to the receiver side. Therefore, successful application of faster-than-Nyquist depends on innovation in the receiver structure. In this paper, we discuss the guidelines for implementing suboptimum, low-complexity receivers based on faster-than-Nyquist. We suggest that duobinary shaping is a good technique for trading off achievable spectral efficiency, detection performance, and implementation complexity and might be preferable to Nyquist WDM. Experiments are conducted to verify robustness of the proposed technique.Ekawit Tipsuwannakul Magnus Karlsson Peter A. Andrekson 2012ZTE Communications2012,10,1:1
11Robust of Dispersion-managed Solitons to the Poiarization-modeDispersion in Optical Fibers显示文摘XIE C KARLSSON M ANDREKSON P A 2001IEEE Photo Technol Lett2001,13,2:1
12Fiber -based optical parametric amplifiers and their applications 显示文摘Hansryd J Andrekson P A Westlund M 20021EEE J Sel Top Quantum Electron2002,8,3:1
13Fiber-based optical parametric amplifiers and their applications显示文摘Hansryd J Andrekson P A Westlund M 2002IEEE Jouranl of Selected in Quantum Electronics2002,8,3:1
14Fiber based on optical parametric amplifiers and their applications显示文摘HANSRYD J ANDREKSON P A WESTUND M 0,,03:1
1516Gbit/s all-optical demultiplexing using four-wave mixing显示文摘ANDREKSON P A OLSSON N A SOMPSON J R 1991Electron Lett1991,27,4:1
16High-per-formance optical fiber nonlinearity based optical waveform moni-toring显示文摘Westlund M Andrekson P A Sunnerud H 2005IEEE Journal of Lightwave Technology2005,23,6:1
17Soliton stability in optical fibers with polarization-mode dispersion显示文摘Zhang X Karlsson M Andrekson P A 1998IEEE Photo Technol Lett1998,10,3:1
18Robust of dispersion-damaged solitons to the polarization-mode dispersion in optical fibers显示文摘Xie C Karlsson M Andrekson P A 2001IEEE Photo Technol Lett2001,13,2:1
19Software-synchronized all-optical sampling for fibercommunication systems 显示文摘Westlund M Sunnerud H Andrekson P A 2005IEEE Journal of Lightwave Technology2005,23,3:1
20Influences of polarization-mode dispersion on soliton transmission systems显示文摘Xie C Karlsson M Andrekson P A 2002IEEE J Sel Topics Quantum Electron2002,8,3:1
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