Moore's Law has set great expectations that the performance/price ratio of commercially available semiconductor devices will continue to improve exponentially at least until the end of the next decade. Although the physics of nanoscale silicon transistors alone would allow these expectations to be met, the physics of the metal wires that connect these transistors will soon place stringent limits on the performance of integrated circuits. We will describe a Si-compatible global interconnect architecture - based on chip-scale optical wavelength division multiplexing - that could precipitate an "optical Moore's Law" and allow exponential performance gains until the transistors themselves become the bottleneck. Based on similar fabrication tech...
Abstract—We introduce an analytical framework to understand the path for scaling nanophotonic interc...
International audienceComplementary metal-oxide semiconductor (CMOS) technology has radically reshap...
In the area of electronics, continued evolution of nano-electronics beyond the scaling limits of Moo...
Past decades have witnessed the unprecedented success in very-large scale integration-based electron...
Forthcoming CMOS technology nodes are in principle sufficient for achieving both the quantum informa...
Quantum-based communication systems can potentially achieve the ultimate security from eavesdropping...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Quantum technologies based on photons will likely require integrated optics architectures for improv...
In the past half-century, the International Technology Roadmap for Semiconductors (ITRS) has been su...
Intel Moore observed an exponential doubling in the number of transistors in every 18 months through...
Advances in nanotechnology have enabled the opportunity to fabricate nanoscale optical devices and ...
We shall review two implementation proposals for quantum information processing based on charge degr...
Through Moore’s law, it has been observed that, in every two years, the number of transistors in a d...
The ITRS shows that the scaling effort will continue to a few tens of nanometers. In this talk, I wi...
For decades, the performance of Si microprocessors has increased exponentially following "Moore's La...
Abstract—We introduce an analytical framework to understand the path for scaling nanophotonic interc...
International audienceComplementary metal-oxide semiconductor (CMOS) technology has radically reshap...
In the area of electronics, continued evolution of nano-electronics beyond the scaling limits of Moo...
Past decades have witnessed the unprecedented success in very-large scale integration-based electron...
Forthcoming CMOS technology nodes are in principle sufficient for achieving both the quantum informa...
Quantum-based communication systems can potentially achieve the ultimate security from eavesdropping...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Quantum technologies based on photons will likely require integrated optics architectures for improv...
In the past half-century, the International Technology Roadmap for Semiconductors (ITRS) has been su...
Intel Moore observed an exponential doubling in the number of transistors in every 18 months through...
Advances in nanotechnology have enabled the opportunity to fabricate nanoscale optical devices and ...
We shall review two implementation proposals for quantum information processing based on charge degr...
Through Moore’s law, it has been observed that, in every two years, the number of transistors in a d...
The ITRS shows that the scaling effort will continue to a few tens of nanometers. In this talk, I wi...
For decades, the performance of Si microprocessors has increased exponentially following "Moore's La...
Abstract—We introduce an analytical framework to understand the path for scaling nanophotonic interc...
International audienceComplementary metal-oxide semiconductor (CMOS) technology has radically reshap...
In the area of electronics, continued evolution of nano-electronics beyond the scaling limits of Moo...