• Frontiers of Optoelectronics
  • Vol. 7, Issue 3, 385 (2014)
Dingbo CHEN*, Jeffery BLOCH, Rui WANG, and Paul K. L. YU
Author Affiliations
  • Department of Electrical and Computer Engineering, University of California, San Diego, 9500 Gilman Dr, La Jolla, CA 92093, USA
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    DOI: 10.1007/s12200-014-0421-7 Cite this Article
    Dingbo CHEN, Jeffery BLOCH, Rui WANG, Paul K. L. YU. Absorption density control in waveguide photodiode-analysis, design, and demonstration[J]. Frontiers of Optoelectronics, 2014, 7(3): 385 Copy Citation Text show less
    References

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    [2] Williams K J, Esman R D, Dagenais M. Nonlinearities in pin microwave photodetectors. Journal of Lightwave Technology, 1996, 14(1): 84–96

    [3] Lasaosa D, Shi J W, Pasquariello D, Gan K G, Tien M C, Chang H H, Chu S W, Sun C K, Chiu Y J, Bowers J E. Traveling-wave photodetectors with high power-bandwidth and gain-bandwidth product performance. Quantum Electronics, 2004, 10(4): 728–741

    [4] Demiguel S, Giraudet L. Joulaud L, Decobert J, Blache F, Coupe V, Jorge F, Rossiaux P P, Boucherez E, Achouche M, Devaux F. Evanescently coupled photodiodes integrating a double-stage taper for 40-Gb/s applications-compared performance with side-illuminated photodiodes. Journal of Lightwave Technology, 2002, 20(12): 2004–2014

    [5] Michel N, Magnin V, Harari J, Marceaux A, Parillaud O, Decoster D, Vodjdani N. High-power evanescently-coupled waveguide photodiodes. IEE Proceedings-Optoelectronics, 2006, 153(4): 199–204

    [6] Jiang H, Yu P K L. High power waveguide integrated photodiode with distributed absorption. In: Proceedings of IEEE MTT-S Digest. 2000, 2: 679–682

    [7] Liao T S, Mages P, Yu P K L. Investigation of the high power integrated uni-traveling carrier and waveguide integrated photodiode. In: Proceedings of IEEE MTT-S Digest. 2003, 1: 155–158

    [8] Jiang H, Yu P K L. Waveguide integrated photodiode for analog fiber-optics links. IEEE Transactions on Microwave Theory and Techniques, 2000, 48(12): 2604–2610

    [9] Kato K, Yoshida J. Ultrawide-bandwidth 1.55 μm waveguide p-i-n photodiode. Proceedings of the Society for Photo-Instrumentation Engineers, 1994, 2149: 312–319

    [10] Draa M N, Bloch J, Chen D B, Scott D C, Chen N, Chen S B, Yu X C, Chang W S C, Yu P K L. Novel directional coupled waveguide photodiode-concept and preliminary results. Optics Express, 2010, 18(17): 17729–17735

    [11] Zhang Y X, Liao Z Y, Zhao L J, Zhu H L, Pan J Q,Wang W. A highefficiency high-power evanescently coupled UTC-photodiode. Journal of Semiconductors, 2009, 30(4): 1–4

    [12] Klamkin J, Ramaswamy A, Johansson L A, Chou H F, Sysak M N, Raring J W, Parthasarathy N, DenBaars S P, Bowers J E, Coldren L A. High output saturation and high-linearity uni-traveling-carrier waveguide photodiodes. IEEE Photonics Technology Letters, 2007, 19(3): 149–151

    Dingbo CHEN, Jeffery BLOCH, Rui WANG, Paul K. L. YU. Absorption density control in waveguide photodiode-analysis, design, and demonstration[J]. Frontiers of Optoelectronics, 2014, 7(3): 385
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