Paper
5 December 2005 High-speed (10-40 Gb/s) electroabsorption modulator integrated devices for fiber communications
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Proceedings Volume 6020, Optoelectronic Materials and Devices for Optical Communications; 60200Q (2005) https://doi.org/10.1117/12.636184
Event: Asia-Pacific Optical Communications, 2005, Shanghai, China
Abstract
In this talk, identical epitaxial layer high speed electroabsorption (EA) modulator integrated light sources are studied systematically. Firstly, a 1.55 μm 10 Gb/s distributed feedback (DFB) laser integrated EA modulated laser is presented, which adopts a partially gain-coupled DFB laser to improve single-mode yield. The typical measured small signal response indicates a 3 dB electrical bandwidth over 10 GHz. Secondly, a 1.55 μm laterally coupled DFB laser is fabricated to eliminate the necessity of additional regrowth, in order to reduce the process complexity and fabrication cost. A stable single-mode operation has been demonstrated with a side mode suppression ratio over 45 dB at an injection level of 60 mA. Finally, an SOA integrated EA modulator with a planar ridge waveguide is fabricated for 40 Gb/s optical fiber communication systems. The device is chip-level packaged and tested on a coplanar waveguide based submount. The small signal frequency modulation responses of the integrated EA modulator are measured and simulated based on an equivalent circuit. The measured 3 dBe modulation bandwidth exceeds 40 GHz, and it is estimated to be over 45 GHz.
© (2005) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Yi Luo, Bing Xiong, Jian Wang, and Changzheng Sun "High-speed (10-40 Gb/s) electroabsorption modulator integrated devices for fiber communications", Proc. SPIE 6020, Optoelectronic Materials and Devices for Optical Communications, 60200Q (5 December 2005); https://doi.org/10.1117/12.636184
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KEYWORDS
Modulators

Modulation

Semiconducting wafers

Light sources

Waveguides

Telecommunications

Fiber optic communications

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