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Dive into the research topics where Chan-Long Shieh is active.

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Featured researches published by Chan-Long Shieh.


IEEE Photonics Technology Letters | 2005

Efficient CW lasing and high-speed Modulation of 1.3-μm AlGaInAs VCSELs with good high temperature lasing performance

Julian Cheng; Chan-Long Shieh; Xiaodong Huang; Guoli Liu; M.V.R. Murty; C.C. Lin; D.X. Xu

The 1.31-/spl mu/m AlGaInAs vertical-cavity surface-emitting lasers achieved efficient single-mode (SM) continuous-wave lasing at temperatures up to 120/spl deg/C, with 2.0-mW output power and 31% slope efficiency, as well as multimode (MM) lasing with up to 9-mW output power and up to 39% slope efficiency. High-speed modulation at data rates up to 10 Gb/s and transmission through different lengths of SM and MM fiber are demonstrated.


IEEE Photonics Technology Letters | 2005

Long-wavelength VCSEL-based CWDM scheme for 10-GbE links

M.V.R. Murty; Xiaodong Huang; Guoli Liu; Chien-Chung Lin; D. Xu; Chan-Long Shieh; H.C. Lee; Julian Cheng

We have implemented a coarse wavelength-division-multiplexing scheme based on uncooled long-wavelength vertical-cavity surface-emitting lasers (VCSELs) for 10-GbE transmission over 62.5-mm multimode fiber. Long-wavelength VCSELs were fabricated at the nominal wavelengths of 1275, 1300, 1325, and 1350 nm and integrated into a XENPAK module. Individual VCSELs require a drive current of 10 mA or less at 20/spl deg/C-85/spl deg/C.


Vertical-Cavity Surface-Emitting Lasers IX | 2005

Long-wavelength VCSEL: the technology for 10-gigabit enterprise networks

Wenbin Jiang; Chan-Long Shieh; Ramana Murty; Guoli Liu; Xiaodong Huang; Diechi Sun; Julian Cheng; Hsing-Chung Lee

Long wavelength VCSELs at 1300 nm have been developed to serve 10-Gigabit enterprise networks over FDDI grade multimode fibers up to 300 m in distance. The long wavelength VCSELs operate CW at temperatures over 100 °C. They are ideal low cost alternatives to DFB lasers for transceivers and transponders compatible with IEEE 10GBASE-LX4 or 10GBASE-LRM standards over multimode fibers.


Applied Physics Letters | 2005

Optically-pumped long-wavelength vertical-cavity surface-emitting laser with high modulation bandwidth

M. V. Ramana Murty; D. Xu; Chien-Chung Lin; Chan-Long Shieh; J. Y. Tsao; Julian Cheng

Optically-pumped long-wavelength vertical-cavity surface-emitting lasers (VCSELs) have been fabricated exhibiting more than 2mW over 20–70°C, and 1.25mW at 85°C. Small-signal modulation measurements on the VCSEL at 20°C indicate a 3dB bandwidth of 14.8GHz at an output power of 2mW. The VCSELs have a narrow spectral width suitable for data transmission over single-mode fiber. The good temperature performance of the VCSEL is maintained in a suspended configuration that would allow monolithic integration.


Frontiers in Optics | 2003

Optically-pumped long wavelength VCSEL

Julian Cheng; Chan-Long Shieh; Ramana Murty

Optically-pumped long wavelength VCSELs emitting at 1.3 µm have been achieved in a compact format. Continuous-wave, single-mode lasing operation has been demonstrated with low lasing threshold, high output power, and a large SMSR over a wide range of operating temperatures.


Archive | 2002

Electrically pumped long-wavelength VCSEL and methods of fabrication

Wenbin Jiang; Julian Cheng; Chan-Long Shieh; Hsing-Chung Lee


Archive | 2004

Low voltage multi-junction vertical cavity surface emitting laser

Julian Cheng; Chan-Long Shieh; Guoli Liu; Medicharla Venkata Ramana Murty


Archive | 2002

Systems, methods, and apparatuses for optically pumped vertical cavity surface emitting laser devices

Julian Cheng; Chan-Long Shieh; M. V. Ramana Murty; Hsing-Chung Lee


Archive | 2000

Method and apparatus for parallel optical interconnection of fiber optic transmitters, receivers and transceivers

Wenbin Jiang; Hsing-Chung Lee; Min-Wen Cheng; Chan-Long Shieh; Cheng Ping Wei; Edwin Dair


Archive | 2003

Method of fabricating long-wavelength VCSEL and apparatus

Chan-Long Shieh

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