A sub-picojoule-per-bit CMOS photonic receiver for densely integrated systems.
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E. Alon | R. Ho | H. Thacker | J. Lexau | T. Pinguet | A. Mekis | J. Cunningham | A. Krishnamoorthy | Xuezhe Zheng | Guoliang Li | Jin Yao | Ying Luo | K. Raj | Frankie Y. Liu | D. Patil | Jing Shi
[1] G. Williams. Wide-dynamic-range fiber optic receivers , 1982, 1982 IEEE International Solid-State Circuits Conference. Digest of Technical Papers.
[2] R. Kushner,et al. A single chip NMOS preamplifier for optical fiber receivers , 1983, 1983 IEEE International Solid-State Circuits Conference. Digest of Technical Papers.
[3] A. A. Abidi. Gigahertz transresistance amplifiers in fine line NMOS , 1984 .
[4] D. Hartman,et al. A monolithic silicon photodetector/amplifier IC for fiber and integrated optics application , 1985, Journal of Lightwave Technology.
[5] P. Lim,et al. A 3.3-V monolithic photodetector/CMOS-preamplifier for 531 Mb/s optical data link applications , 1993, 1993 IEEE International Solid-State Circuits Conference Digest of Technical Papers.
[6] D. Kossives,et al. 3-D integration of MQW modulators over active submicron CMOS circuits: 375 Mb/s transimpedance receiver-transmitter circuit , 1995, IEEE Photonics Technology Letters.
[7] T. K. Woodward,et al. Optical receivers for optoelectronic VLSI , 1996 .
[8] T. K. Woodward,et al. Optoelectronic VLSI switching chip with greater than 1 Tbit/s potential optical I/O bandwidth , 1997 .
[9] O. Vendier,et al. Stacked silicon CMOS circuits with a 40-Mb/s through-silicon optical interconnect , 1998, IEEE Photonics Technology Letters.
[10] Joe C. Campbell,et al. A 1-Gb/s monolithically integrated silicon NMOS optical receiver , 1998 .
[11] Ashok V. Krishnamoorthy,et al. 1 Gbit/s CMOS photoreceiver with integrated detector operating at 850 nm , 1998 .
[12] M. Ingels,et al. A 1-Gb/s, 0.7-μm CM+ OS optical receiver with full rail-to-rail output swing , 1999, IEEE J. Solid State Circuits.
[13] Mark Ingels,et al. A 1-Gb/s, 0.7-/spl mu/m CMOS optical receiver with full rail-to-rail output swing , 1999 .
[14] T. K. Woodward,et al. 1-Gb/s integrated optical detectors and receivers in commercial CMOS technologies , 1999 .
[15] Cary Gunn,et al. CMOS Photonics for High-Speed Interconnects , 2006, IEEE Micro.
[16] Jeremy Witzens,et al. High-speed, Monolithic CMOS Receivers with Ge on Si Waveguide Photodetectors , 2008 .
[17] A. Griol,et al. Vertical multiple-slot waveguide ring resonators in silicon nitride. , 2008, Optics express.
[18] J. Witzens,et al. Monolithically integrated high-speed CMOS photonic transceivers , 2008, 2008 5th IEEE International Conference on Group IV Photonics.
[19] Ashok V. Krishnamoorthy,et al. Circuits for silicon photonics on a “macrochip” , 2009, 2009 IEEE Asian Solid-State Circuits Conference.
[20] P. Crozat,et al. 42 GHz p.i.n Germanium photodetector integrated in a silicon-on-insulator waveguide. , 2009, Optics express.
[21] Ashok V. Krishnamoorthy,et al. An Ultra-Low Power All CMOS Si Photonic Transmitter , 2009 .
[22] M. Lipson,et al. Ultra-low capacitance and high speed germanium photodetectors on silicon. , 2009, Optics express.
[23] Ashok V. Krishnamoorthy,et al. Computer Systems Based on Silicon Photonic Interconnects A proposed supercomputer-on-a-chip with optical interconnections between processing elements will require development of new lower-energy optical components and new circuit architectures that match electrical datapaths to complementary optical , 2009 .
[24] David A. B. Miller,et al. Device Requirements for Optical Interconnects to Silicon Chips , 2009, Proceedings of the IEEE.