Search Results - "Lafragette, J.L"
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2.5-Gb/s transmission characteristics of 1.3-μm DFB lasers with external optical feedback
Published in IEEE photonics technology letters (01-01-2002)“…All-optical networks will require low-cost laser sources. In order to reduce the packaging cost and to design a module without optical isolator, the 2.5-Gb/s…”
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Journal Article -
2
Coherence collapse threshold of 1.3µm semiconductor DFB lasers
Published in IEEE photonics technology letters (2003)Get full text
Journal Article -
3
Coherence-collapse threshold of 1.3-μm semiconductor DFB lasers
Published in IEEE photonics technology letters (01-01-2003)“…The onset of the coherence-collapse threshold is theoretically and experimentally studied for monomode 1.3-μm antireflection/high reflection…”
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4
Coherence-collapse threshold of 1.3-[mu]m semiconductor DFB lasers
Published in IEEE photonics technology letters (01-01-2003)Get full text
Journal Article -
5
2.5-Gb/s transmission characteristics of 1.3-[mu]m DFB lasers with external optical feedback
Published in IEEE photonics technology letters (01-01-2002)Get full text
Journal Article -
6
2.5 Gbit/s transmission characteristics of 1.3µm DFB lasers with external optical feedback
Published in IEEE photonics technology letters (2002)Get full text
Journal Article -
7
1.55 /spl mu/m high efficiency tapered DFB laser using UV 250 2-in technology process
Published in Conference Proceedings. Eleventh International Conference on Indium Phosphide and Related Materials (IPRM'99) (Cat. No.99CH36362) (1999)“…We report on high external efficiency reduced far field divergence DFB laser emitting at 1.55 /spl mu/m. A high spatial resolution lithography is used to…”
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Conference Proceeding -
8
2.5Gbit/s 85 ° C floor-free operation of 1.3 μm DFB lasers under external optical feedback for different reflection distances
Published in 2002 28TH European Conference on Optical Communication (2002)“…all-optical networks require low cost and high efficiency laser sources. We demonstrate floorless 2.5 Gbit/s transmission under-19dB return loss and at 85°C…”
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Conference Proceeding -
9
2.5 Gbit/s error-floor free transmission with high extinction ratio using directly modulated 1.55 /spl mu/m tapered lasers
Published in Optical Fiber Communication Conference. Technical Digest Postconference Edition. Trends in Optics and Photonics Vol.37 (IEEE Cat. No. 00CH37079) (2000)“…The emergence of a BER floor using a directly modulated laser is studied versus the modulation extinction ratio. A selection on efficiency leads to a 100% DFB…”
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Conference Proceeding -
10
New WDM DFB laser structure for facet phase-free uniform performances
Published in Conference Digest. 2000 IEEE 17th International Semiconductor Laser Conference. (Cat. No.00CH37092) (2000)“…A new concept for a DFB MQW monomode laser has been proposed and demonstrated. The new structure combines high SMSR, excellent uniformity, high efficiency and…”
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Conference Proceeding -
11
Record low noise factor (5.2 dB) in 1.55 /spl mu/m bulk SOA for high bit rate low-noise preamplification
Published in Proceedings of European Conference on Optical Communication (1996)“…A new optimized SOA, with short active region, tensile bulk active material and double core tapers, shows an extremely low n/sub sp//c/sub 1/ value of 5.2 dB,…”
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Conference Proceeding -
12
1.3 /spl mu/m low cost plastic module for 622 Mbit/s transmission at 85/spl deg/C
Published in 24th European Conference on Optical Communication. ECOC '98 (IEEE Cat. No.98TH8398) (1998)“…We present the characteristics of an uncooled plastic module for outdoor operation (+3 dBm at 85/spl deg/C). A transmission experiment is reported at 622…”
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Conference Proceeding -
13
Encapsulated tapered active layer 1.3 μm Fabry-Perot laser operating at high temperature
Published in 11th International Conference on Integrated Optics and Optical Fibre Communications. 23rd European Conference on Optical Communications IOOC-ECOC97 (1997)“…High temperature operation at 1.3 μm Fabry-Perot lasers with tapered active region is reported for silicone encapsulated chips. Burn-in tests demonstrate that…”
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Conference Proceeding