Dr. Gyoungwon Park
at Optex Systems, Inc
SPIE Involvement:
Publications (6)

Proceedings Article | 27 April 2010 Paper
Proceedings Volume 7720, 772004 (2010) https://doi.org/10.1117/12.854813
KEYWORDS: Vertical cavity surface emitting lasers, Reliability, Transceivers, Failure analysis, Semiconducting wafers, Data communications, Networks, Optics manufacturing, Data centers, Optical interconnects

Proceedings Article | 6 February 2010 Paper
D. Gazula, J. Guenter, R. Johnson, G. Landry, A. MacInnes, G. Park, J. K. Wade, J. R. Biard, J. Tatum
Proceedings Volume 7615, 761506 (2010) https://doi.org/10.1117/12.841012
KEYWORDS: Vertical cavity surface emitting lasers, Modulation, Reliability, Temperature metrology, Standards development, Transceivers, Receivers, Capacitance, Photodiodes, Space operations

Proceedings Article | 17 June 2003 Paper
Ralph Johnson, Virgil Blasingame, Jim Tatum, Bo-Su Chen, David Mathes, James Orenstein, Tzu-Yu Wang, Jin Kim, Ho-Ki Kwon, Jae-Hyun Ryou, Gyoungwon Park, Edith Kalweit, Helen Chanhvongsak, Mike Ringle, Terry Marta, Joe Gieske
Proceedings Volume 4994, (2003) https://doi.org/10.1117/12.488221
KEYWORDS: Vertical cavity surface emitting lasers, Quantum wells, Mirrors, Metalorganic chemical vapor deposition, Nitrogen, Aluminum, Gallium arsenide, Absorption, Semiconductors, Resistance

Proceedings Article | 4 June 2002 Paper
Jim Tatum, Mary Hibbs-Brenner, J. Robert Biard, Andrew Clark, J. Allen Cox, James Guenter, Robert Hawthorne, Klein Johnson, Ralph Johnson, J. Kim, Yue Liu, Fouad Nusseibeh, Gyoungwon Park
Proceedings Volume 4649, (2002) https://doi.org/10.1117/12.469216
KEYWORDS: Vertical cavity surface emitting lasers, Reliability, Optics manufacturing, Standards development, Control systems, Manufacturing, Dielectrics, Packaging, Optical networks, Data communications

Proceedings Article | 11 July 2000 Paper
Proceedings Volume 4078, (2000) https://doi.org/10.1117/12.392129
KEYWORDS: Indium gallium arsenide, Indium arsenide, Temperature metrology, Laser damage threshold, Gallium arsenide, Waveguides, Quantum dot lasers, Quantum dots, Continuous wave operation, Epitaxy

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