Digital noise-tolerant silicon nanophotonic switch
Joris Van Campenhout, William M. J. Green, et al.
CLEO 2010
In this paper we propose an optically pumped nanophotonic III-V semiconductor optical amplifier heterogeneously integrated on a silicon-on-insulator waveguide circuit through wafer bonding technology. 10μm long adiabatic tapers allow a full power transfer from the silicon waveguide layer to the III-V membrane. Low-power consumption is expected, given the high optical confinement in the 100nm thick III-V membrane waveguide, making it suitable for intra-chip optical interconnect networks. We report on the design and preliminary characterization of this novel type of high-index contrast nanophotonic device. ©2010 IEEE.
Joris Van Campenhout, William M. J. Green, et al.
CLEO 2010
Jeffrey B. Driscoll, William Astar, et al.
IEEE Journal on Selected Topics in Quantum Electronics
Benjamin G. Lee, Solomon Assefa, et al.
CLEO-SI 2011
William M. J. Green, Solomon Assefa, et al.
LEOS 2008