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19篇 您的检索式:作者名="PENTI V"
    题名 作者 年代 出处 被引量
1High-order distortion in direct modulated semiconductor lasers in high-loss analog optical link with large of dynamic range显示文摘GORDON G S D CRISP M J PENTY R V 2011IEEE Journal of Lightwave Technology2011,29,23:1
2Demonstration of ultrafast all-optical wavelength conversion utilizing birefringence in semiconductor optical amplifiers 显示文摘STEPENS M F C ASGHARI M PENTY R V 1997IEEE Photon Technol Lett1997,9,4:1
3Penalty free subearrier modulated multimode Fiber links for data- comm application beyond the bandwidth limit 显示文摘TYLER E J WEBSTER M PENTY R V 2002IEEE Photonics Technology Letters2002,14,1:1
4Wavelength conversion using semiconductor optical amplifiers显示文摘 Ian H White and Richard V Penty 1997IEEE Journal of Lightwave Technology1997,15,7:1
5Penalty free subcarrier modulated multimode Fiber links for dataeomm application hevnnd the bandwidth limit显示文摘Tyler E J Webster M Penty R V 2002IEEE Photonics Technology Letters2002,14,1:1
6Compact multimode polymer waveguide bends for board-level optical interconnects显示文摘Bamiedakis N Penty R V White I H 2013JLightwave Technol2013,31,14:1
7Electronic Equalization for Length Extension of×2 to×3in 10 Gb/s Multimode-Fiber Data Communication Links显示文摘INGHAM J D PENTY R V WHITE I H 2004Electron Lett2004,40,22:1
8Directly modulated wavelength-multiplexed integrated microring laser array显示文摘Bennecer A Williams K A Penty R V 2008IEEE Photonics Technology Letters2008,20,16:1
9Wavelength Conversion Using Semiconductor Optical Amplifiers 显示文摘Mehdi Asghari Ian H White Richard V Penty 1997Lightwave Technol1997,15,7:1
10Wavelength conversion using semiconductor optical amplifiers显示文摘Asghari M White I H Penty R V 1997Journal of Lightwave Technology1997,15,7:1
11Wavelength conversion using semiconductor optical amplifiers 显示文摘Asghari M White I H Penty R V 1997Journal of Lightwave Technology1997,15,7:1
12Boundary element analysis of a plate on elastic foundation显示文摘JARI P PENTI V 1986International Journal for Numerical Methods in Engineering1986,23,2:1
13Wavelength conversion using semiconductor optical amplifiers 显示文摘ASGHARI M WHITE H PENTY R V 1997J Lightwave Technology1997,15,:1
14Demonstration of ultrafast all-optical wavelength conversion utilizing birefringence in semiconductor optical amplifiers显示文摘Stephens M F C Asghari M Penty R V 0,,:1
15Wavelength conversion using semiconductor optical amplifiers 显示文摘Asghari M White I H Penty R V 1997Journal of Lightwave Technology(S0733-8724)1997,15,7:1
16Large port count high-speed optical switch fabric for use within datacenters显示文摘WONFOR A WANG H PENTY R V 2011Journal of Optical Communications and Networking2011,3,8:1
17Wav-elength conversion using semiconductor optical amplifiers显示文摘Mehdi Asghari Ian H White Richard V Penty 1997IEEE/OSA J Lightwave Technol1997,15,7:1
18Optical DE/MUX Components for Datacomunication Applications显示文摘This paper reviews the potential for WDM systems to be implemented within datacommunication systems, and indicates future network functions. Spectral and temporal multiplexing functions are reviewed, with particular focus being placed on 2DIO and amplifier based crosspoint components.Ian H White Richard V Penty Kevin A Williams Chris N Morgan 2003光学学报2003,23,S1:1
19Pulse generation with ultra-superluminal pulse propagation in semiconductor heterostructures by superradiant-phase transition enhanced by transient coherent population gratings显示文摘This paper reports the observation of ultra-superluminal pulse propagation in multiple-contact semiconductor heterostructures in a superradiant emission regime,and shows definitively that it is a different class of emission from conventional spontaneous or stimulated emission.Coherent population gratings induced in the semiconductor medium under strong electrical pumping have been shown to cause a major decrease of the group refractive index,in the range of 5–40%.This decrease is much greater than that caused by conventional carrier depletion or chirp mechanisms.The decrease in refractive index in turn causes faster-than-c propagation of femtosecond pulses.The measurement also proves the existence of coherent amplification of electromagnetic pulses in semiconductors at room temperature,the coherence being strongly enhanced by interactions of the light with coherent transient gratings locked to carrier gratings.This pulse-generation technique is anticipated to have great potential in applications where highly coherent femtosecond optical pulses must be generated on demand.Peter P Vasil’ev Richard V Penty Ian H White 2016Light(Science & Applications)2016,5,1:0
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