Optical microring resonators can be integrated on a chip to perform switching operations directly in the optical domain. Thus they become a building block to create switching elements in on-chip optical interconnection networks, which promise to overcome some of the limitations of current electronic networks. However, the peculiar asymmetric power losses of microring resonators impose new constraints on the design and control of on-chip optical networks. In this work, we study the design of multistage interconnection networks optimized for a particular metric that we name the degradation index, which characterizes the asymmetric behavior of microrings. We also propose a routing control algorithm to maximize the overall throughput, consideri...
Projecte fet en col.laboració amb la Facoltà di Ingegneria dell’Informazione. Politecinco de TorinoT...
Optical technology has boosted the revolution of Optical Networks-on-Chip (ONoC). In this paper, a p...
As technology scales into deep submicron domains, electrical wires start to face critical challenges...
This letter investigates the use of optical microring resonators as switching elements (SEs) in larg...
Photonic integrated technologies are a widely accepted platform to overcome electronic limitations f...
International audienceThe next generation of multiprocessor systems on chip requires development and...
This thesis investigates optical interconnection networks for high performance switching and routing...
International audienceThe next generation of multiprocessor systems on chip requires development and...
International audienceThe next generation of multiprocessor systems on chip requires development and...
International audienceThe next generation of multiprocessor systems on chip requires development and...
International audienceThe next generation of multiprocessor systems on chip requires development and...
Integrated silicon photonics provides a promising platform for chip-based, high-speed optical signal...
The aim of this thesis is to present and analyse optical interconnection architectures based on micr...
The physical characteristics of microring resonator switching devices are thoroughly analyzed using ...
Optical technology has boosted the revolution of Optical Networks-on-Chip (ONoC). In this paper, a p...
Projecte fet en col.laboració amb la Facoltà di Ingegneria dell’Informazione. Politecinco de TorinoT...
Optical technology has boosted the revolution of Optical Networks-on-Chip (ONoC). In this paper, a p...
As technology scales into deep submicron domains, electrical wires start to face critical challenges...
This letter investigates the use of optical microring resonators as switching elements (SEs) in larg...
Photonic integrated technologies are a widely accepted platform to overcome electronic limitations f...
International audienceThe next generation of multiprocessor systems on chip requires development and...
This thesis investigates optical interconnection networks for high performance switching and routing...
International audienceThe next generation of multiprocessor systems on chip requires development and...
International audienceThe next generation of multiprocessor systems on chip requires development and...
International audienceThe next generation of multiprocessor systems on chip requires development and...
International audienceThe next generation of multiprocessor systems on chip requires development and...
Integrated silicon photonics provides a promising platform for chip-based, high-speed optical signal...
The aim of this thesis is to present and analyse optical interconnection architectures based on micr...
The physical characteristics of microring resonator switching devices are thoroughly analyzed using ...
Optical technology has boosted the revolution of Optical Networks-on-Chip (ONoC). In this paper, a p...
Projecte fet en col.laboració amb la Facoltà di Ingegneria dell’Informazione. Politecinco de TorinoT...
Optical technology has boosted the revolution of Optical Networks-on-Chip (ONoC). In this paper, a p...
As technology scales into deep submicron domains, electrical wires start to face critical challenges...